cadmium The cadmium oxidotellurates(IV) Cd5(TeO3)4(NO3)2 and Cd4Te5O14 By journals.iucr.org Published On :: The crystal structure of Cd5(TeO3)4(NO3)2 exhibits a distinct layered arrangement, whereas Cd4Te5O14 crystallizes with a framework structure. Full Article text
cadmium Crystal structure of polymeric bis(3-amino-1H-pyrazole)cadmium dibromide By journals.iucr.org Published On :: 2023-11-14 The reaction of cadmium bromide tetrahydrate with 3-aminopyrazole (3-apz) in ethanolic solution leads to tautomerization of the ligand and the formation of crystals of the title compound, catena-poly[[dibromidocadmium(II)]-bis(μ-3-amino-1H-pyrazole)-κ2N3:N2;κ2N2:N3], [CdBr2(C3H5N3)2]n or [CdBr2(3-apz)2]n. Its asymmetric unit consists of a half of a Cd2+ cation, a bromide anion and a 3-apz molecule. The Cd2+ cations are coordinated by two bromide anions and two 3-apz ligands, generating trans-CdN4Br2 octahedra, which are linked into chains by pairs of the bridging ligands. In the crystal, the ligand molecules and bromide anions of neighboring chains are linked through interchain hydrogen bonds into a two-dimensional network. The intermolecular contacts were quantified using Hirshfeld surface analysis and two-dimensional fingerprint plots, revealing the relative quantitative contributions of the weak intermolecular contacts. Full Article text
cadmium Crystal structure reinvestigation and spectroscopic analysis of tricadmium orthophosphate By journals.iucr.org Published On :: 2023-11-14 Single crystals of tricadmium orthophosphate, Cd3(PO4)2, have been synthesized successfully by the hydrothermal route, while its powder form was obtained by a solid-solid process. The corresponding crystal structure was determined using X-ray diffraction data in the monoclinic space group P21/n. The crystal structure consists of Cd2O8 or Cd2O10 dimers linked together by PO4 tetrahedra through sharing vertices or edges. Scanning electron microscopy (SEM) was used to investigate the morphology and to confirm the chemical composition of the synthesized powder. Infrared analysis corroborates the presence of isolated phosphate tetrahedrons in the structure. UV–Visible studies showed an absorbance peak at 289 nm and a band gap energy of 3.85 eV, as determined by the Kubelka–Munk model. Full Article text
cadmium Synthesis, crystal structure and Hirshfeld surface analysis of a cadmium complex of naphthalene-1,5-disulfonate and o-phenylenediamine By journals.iucr.org Published On :: 2023-11-30 A novel o-phenylenediamine (opda)-based cadmium complex, bis(benzene-1,2-diamine-κ2N,N')bis(benzene-1,2-diamine-κN)cadmium(II) naphthalene-1,5-disulfonate, [Cd(C6H8N2)4](C10H6O6S2), was synthesized. The complex salt crystallizes in the monoclinic space group C2/c. The Cd atom occupies a special position and coordinates six nitrogen atoms from four o-phenylenediamine molecules, two as chelating ligands and two as monodentate ligands. The amino H atoms of opda interact with two O atoms of the naphthalene-1,5-disulfonate anions. The anions act as bridges between [Cd(opda)4]2+ cations, forming a two-dimensional network in the [010] and [001] directions. The Hirshfeld surface analysis shows that the primary factors contributing to the supramolecular interactions are short contacts, particularly van der Waals forces of the type H⋯H, O⋯H and C⋯H. Full Article text
cadmium Synthesis and crystal structure of a cadmium(II) coordination polymer based on 4,4'-(1H-1,2,4-triazole-3,5-diyl)dibenzoate By journals.iucr.org Published On :: 2024-01-09 The asymmetric unit of the title compound, catena-poly[[[aquabis(pyridine-κN)cadmium(II)]-μ2-4,4'-(1H-1,2,4-triazole-3,5-diyl)dibenzoato-κ4O,O':O'',O'''] 4.5-hydrate], {[Cd(C16H9N3O4)(C5H5N)2(H2O)]·4.5H2O}n or {[Cd(bct)(py)2(H2O)]·4.5H2O}n (I), consists of a Cd2+ cation coordinated to one bct2– carboxylate dianion, two molecules of pyridine and a water molecule as well as four and a half water molecules of crystallization. The metal ion in I possesses a pentagonal–bipyramidal environment with the four O atoms of the two bidentately coordinated carboxylate groups and the N atom of a pyridine molecule forming the O4N equatorial plane, while the N atom of another pyridine ligand and the O atom of the water molecule occupy the axial positions. The bct2– bridging ligand connects two metal ions via its carboxylic groups, resulting in the formation of a parallel linear polymeric chain running along the [1overline{1}1] direction. The coordinated water molecule of one chain forms a strong O—H⋯O hydrogen bond with the carboxylate O atom of a neighboring chain, leading to the formation of double chains with a closest distance of 5.425 (7) Å between the cadmium ions belonging to different chains. Aromatic π–π stacking interactions between the benzene fragments of the anions as well as between the coordinated pyridine molecules belonging to different chains results in the formation of sheets oriented parallel to the (overline{1}01) plane. As a result of hydrogen-bonding interactions involving the water molecules of crystallization, the sheets are joined together in a three-dimensional network. Full Article text
cadmium Cadmium phosphates Cd2(PO4)OH and Cd5(PO4)2(OH)4 crystallizing in mineral structures By journals.iucr.org Published On :: 2024-01-26 Single crystals of two basic cadmium phosphates, dicadmium orthophosphate hydroxide, Cd2(PO4)OH, and pentacadmium bis(orthophosphate) tetrakis(hydroxide), Cd5(PO4)2(OH)4, were obtained under hydrothermal conditions. Cd2(PO4)OH adopts the triplite [(Mn,Fe)2(PO4)F] structure type. Its asymmetric unit comprises two Cd, one P and five O sites, all situated at the general Wyckoff position 8 f of space group I2/a; two of the O atoms are positionally disordered over two sites, and the H atom could not be localized. Disregarding the disorder, distorted [CdO6] polyhedra form a tri-periodic network by edge-sharing with neighbouring [CdO6] units and by vertex-sharing with [PO4] units. The site associated with the OH group is coordinated by four Cd atoms in a distorted tetrahedral manner forming 1∞[(OH)Cd4/2] chains parallel to [001]. The oxygen environment around the OH site suggests multiple acceptor atoms for possible O—H⋯O hydrogen-bonding interactions and is the putative reason for the disorder. Cd5(PO4)2(OH)4 adopts the arsenoclasite [Mn5(AsO4)2(OH)4] structure type. Its asymmetric unit comprises five Cd, two P, and twelve O sites all located at the general Wyckoff position 4 a of space group P212121; the H atoms could not be localized. The crystal structure of Cd5(PO4)2(OH)4 can be subdivided into two main sub-units. One consists of three edge-sharing [CdO6] octahedra, and the other of two edge- and vertex-sharing [CdO6] octahedra. Each sub-unit forms corrugated ribbons extending parallel to [100]. The two types of ribbons are linked into the tri-periodic arrangement through vertex-sharing and through common [PO4] tetrahedra. Quantitative structure comparisons are made with isotypic M5(XO4)2(OH)4 crystal structures (M = Cd, Mn, Co; X = P, As, V). Full Article text
cadmium [4-(2-Aminoethyl)morpholine-κ2N,N']dibromidocadmium(II): synthesis, crystal structure and Hirshfeld surface analysis By journals.iucr.org Published On :: 2024-02-08 The title compound, [CdBr2(C6H14N2O)], was synthesized upon complexation of 4-(2-aminoethyl)morpholine and cadmium(II) bromide tetrahydrate at 303 K. It crystallizes as a centrosymmetric dimer, with one cadmium atom, two bromine atoms and one N,N'-bidentate 4-(2-aminoethyl)morpholine ligand in the asymmetric unit. The metal atom is six-coordinated and has a distorted octahedral geometry. In the crystal, O⋯Cd interactions link the dimers into a polymeric double chain and intermolecular C—H⋯O hydrogen bonds form R22(6) ring motifs. Further C—H⋯Br and N—H⋯Br hydrogen bonds link the components into a three-dimensional network. As the N—H⋯Br hydrogen bonds are shorter than the C—H⋯Br interactions, they have a larger effect on the packing. A Hirshfeld surface analysis reveals that the largest contributions to the packing are from H⋯H (46.1%) and Br⋯H/H⋯Br (38.9%) interactions with smaller contributions from the O⋯H/H⋯O (4.7%), Br⋯Cd/Cd⋯Br (4.4%), O⋯Cd/Cd⋯O (3.5%), Br⋯Br (1.1%), Cd⋯H/H⋯Cd (0.9%), Br⋯O/O⋯Br (0.3%) and O⋯N/N⋯O (0.1%) contacts. Full Article text
cadmium Synthesis, crystal structure and properties of poly[di-μ3-chlorido-di-μ2-chlorido-bis[4-methyl-N-(pyridin-2-ylmethylidene)aniline]dicadmium(II)] By journals.iucr.org Published On :: 2024-05-21 The title coordination polymer with the 4-methyl-N-(pyridin-2-ylmethylidene)aniline Schiff base ligand (L, C13H12N2), [Cd2Cl4(C13H12N2)]n (1), exhibits a columnar structure extending parallel to [100]. The columns are aligned in parallel and are decorated with chelating L ligands on both sides. They are elongated into a supramolecular sheet extending parallel to (01overline{1}) through π–π stacking interactions involving L ligands of neighbouring columns. Adjacent sheets are packed into the tri-periodic supramolecular network through weak C—H⋯Cl hydrogen-bonding interactions that involve the phenyl CH groups and chlorido ligands. The thermal stability and photoluminescent properties of (1) have also been examined. Full Article text
cadmium Crystal structure of polymeric bis(3-amino-1H-pyrazole)cadmium diiodide By journals.iucr.org Published On :: 2024-07-05 The reaction of cadmium iodide with 3-aminopyrazole (3-apz) in ethanolic solution leads to tautomerization of the ligand and the formation of crystals of the title compound, catena-poly[[diiodidocadmium(II)]-bis(μ-3-amino-1H-pyrazole)-κ2N2:N3;κ2N3:N2], [CdI2(C3H5N3)2]n or [CdI2(3-apz)2]n. Its asymmetric unit consists of a half of a Cd2+ cation, an iodide anion and a 3-apz molecule. The Cd2+ cations are coordinated by two iodide anions and two 3-apz ligands, generating trans-CdN4I2 octahedra, which are linked into chains by pairs of the bridging ligands. In the crystal, the ligand molecules and iodide anions of neighboring chains are linked through interchain hydrogen bonds into a di-periodic network. The intermolecular contacts were quantified using Hirshfeld surface analysis and two-dimensional fingerprint plots, revealing the relative quantitative contributions of the weak intermolecular contacts. Full Article text
cadmium Crystal structure and Hirshfeld surface analysis of {2-[bis(pyridin-2-ylmethyl)amino]ethane-1-thiolato}chloridocadmium(II) By journals.iucr.org Published On :: 2024-09-30 The title compound, [Cd(C14H16N3S)Cl] or [CdLCl] (1), where LH = 2-[bis(pyridin-2-ylmethyl)amino]ethane-1-thiol, was prepared and structurally characterized. The Cd2+ complex crystallizes in P21/c with a distorted trigonal–bipyramidal metal coordination geometry. Supramolecular interactions in 1 include parallel offset face-to-face interactions between inversion-related pyridyl rings and potential hydrogen bonds with chlorine or sulfur as the acceptor. Additional cooperative pyridyl–pyridyl interactions with roughly 45° tilt angles and centroid–centroid distances of less than 5.5 Å likely also contribute to the overall solid-state stability. Hirshfeld surface analysis indicates that H⋯H (51.2%), Cl⋯H/H⋯Cl (13.9%), C⋯H/H⋯C (12.3%) and S⋯H/H⋯S (11.8%) interactions are dominant in the solid state. Full Article text
cadmium Triclinic polymorph of bis[2-methyl-3-(pyridin-2-yl)imidazo[1,5-a]pyridin-2-ium] tetrachloridocadmium(II) By journals.iucr.org Published On :: 2024-10-04 The crystal structure of the title organic–inorganic hybrid salt, (C13H12N3)2[CdCl4], (I), has been reported with four molecules in the asymmetric unit in a monoclinic cell [Vassilyeva et al. (2021). RSC Advances, 11, 7713–7722]. While using two different aldehydes in the oxidative cyclization–condensation involving CH3NH2·HCl to prepare a new monovalent cation with the imidazo[1,5-a]pyridinium skeleton, a new polymorph was obtained for (I) in space group P1 and a unit cell with approximately half the volume of the monoclinic form. The structural configurations of the two crystallographically non-equivalent organic cations as well as the geometry of the moderately distorted tetrahedral CdCl42– dianion show minor changes. In the crystal, identically stacked cations and tetrachlorocadmate anions form separate columns parallel to the a axis. The loose packing of the anions leads to a minimal separation of approximately 9.53 Å between the metal atoms in the triclinic form versus 7.51 Å in the monoclinic one, indicating that the latter is packed slightly more densely. The two forms also differ by aromatic stacking motifs. Similar to the monoclinic polymorph, the triclinic one excited at 364 nm shows an intense unsymmetrical photoluminescent band with maximum at 403 nm and a full width at half maximum of 51 nm in the solid state. Full Article text
cadmium The cadmium oxidotellurates(IV) Cd5(TeO3)4(NO3)2 and Cd4Te5O14 By journals.iucr.org Published On :: 2024-11-05 Monoclinic single crystals of Cd5(TeO3)4(NO3)2 (space group P21/c), pentacadmium tetrakis[oxidotellurate(IV)] dinitrate, and of Cd4Te5O14 (space group C2/c), tetracadmium pentaoxidotellurate(IV), were obtained under the same hydrothermal conditions. Whereas the crystal structure of Cd5(TeO3)4(NO3)2 is distinctively layered, that of Cd4Te5O14 exhibits a tri-periodic framework. In Cd5(TeO3)4(NO3)2, the three CdII atoms have coordination numbers (CN) of 7, 6 and 6. The two types of [CdO6] and the [CdO7] polyhedra [bond lengths range from 2.179 (3) to 2.658 (2) Å] share corners and edges, resulting in layers extending parallel to (100). Both TeIV atoms are coordinated by three oxygen atoms in a trigonal–pyramidal shape. The oxygen atoms of the isolated [TeO3] groups [bond lengths range from 1.847 (3) to 1.886 (3) Å] all are part of the cadmium–oxygen layer. The electron lone pairs ψ of the TeIV atoms are directed away from the layer on both sides. The available interlayer space is co-occupied by the nitrate group, which is directly connected with two of its O atoms to the layer whereas the third O atom is solely bonded to the N atom and points towards the adjacent layer. In Cd4Te5O14, all three unique CdII atoms are coordinated by six oxygen atoms, considering Cd—O distances from 2.235 (2) to 2.539 (2) Å. By edge- and corner-sharing, the distorted [CdO6] polyhedra form an open framework that is partially filled with three different stereochemically active TeIV atoms. All of them exhibit a CN of 4, with Te—O bonds in a range from 1.859 (2) to 2.476 (2) Å. The corresponding [TeO4] units are linked to each other by corner- and edge-sharing, forming infinite helical 1∞[Te10O28] chains extending parallel to [203]. The connectivity in the chains can be described as (⋯–⋄–⋄=⋄–⋄–⋄–⋄–⋄=⋄–⋄–⋄–⋯)n where ‘⋄’ denotes a [TeO4] unit, ‘–’ a linkage via corners and ‘=’ a linkage via edges. Such a structural motif is unprecedented in the crystal chemistry of oxidotellurate(IV) compounds. Full Article text
cadmium Does Heavy Metal Cadmium Cause Memory Problems? By www.medindia.net Published On :: Cadmium, a heavy metal present in air, water, food, and soil, can affect mental health and cause memory problems, according to a new study. A new study Full Article
cadmium Carbon dots–cadmium sulfide quantum dots nanocomposite for ‘on–off’ fluorescence sensing of chromium(VI) ions By pubs.rsc.org Published On :: RSC Adv., 2024, 14,12923-12934DOI: 10.1039/D4RA00436A, Paper Open Access   This article is licensed under a Creative Commons Attribution 3.0 Unported Licence.Anisha B. Patil, Pooja L. Chaudhary, Parag V. AdhyapakThis work involves fluorescent probe which is composed of carbon dots (CD) and cadmium sulfide quantum dots (CdS QD) for the sensitive and selective fluorescence detection of chromium(VI) ions.The content of this RSS Feed (c) The Royal Society of Chemistry Full Article
cadmium A Novel In-Syringe Cloud Point Extraction Method for the Determination of Cadmium and Lead in Human Hair Samples By pubs.rsc.org Published On :: New J. Chem., 2024, Accepted ManuscriptDOI: 10.1039/D4NJ00335G, PaperHesane Zolfaghari, Seyed Mosayeb Daryanavard, Aqil GholamshahzadehThe measurement of contaminant elements, especially cadmium and lead, in biological samples typically requires time-consuming sample preparation methods that consume organic solvents that are harmful to humans and the environment....The content of this RSS Feed (c) The Royal Society of Chemistry Full Article
cadmium Alleviation of Cadmium-Induced Oxidative Damage through Application of Zinc Oxide Nanoparticles and Strigolactones in Solanum lycopersicum L. By pubs.rsc.org Published On :: Environ. Sci.: Nano, 2024, Accepted ManuscriptDOI: 10.1039/D3EN00796K, PaperVaseem Raja, Karanpal Singh, Sami Ullah Qadir, Jagpreet Singh, Ki-Hyun KimIn this research, zinc oxide nanoparticles (ZnO NPs) are bio-synthesized using Mangifera indica leaf extract as a sustainable capping and stabilizing source. The spherical morphology, crystallinity, and average size (17.97...The content of this RSS Feed (c) The Royal Society of Chemistry Full Article
cadmium Sodium nanoferrite-based solid phase extraction: a green method for the simultaneous determination of cadmium, copper, and lead By pubs.rsc.org Published On :: J. Anal. At. Spectrom., 2024, 39,2884-2892DOI: 10.1039/D4JA00210E, PaperSaima Perveen, Aysen Hol, Jameel Ahmed Baig, Syed Tufail Hussain Sherazi, Khalil Akhtar, Sajjad Hussain, Fahad AbbasiA solid phase extraction (SPE) methodology utilizing sodium ferrite nanoparticles (Na2Fe4O7-NPs; SF-NPs) is presented for the simultaneous determination of heavy metals (HMs) via flame atomic absorption spectrometry (FAAS).The content of this RSS Feed (c) The Royal Society of Chemistry Full Article
cadmium An azo-receptor immobilized mesoporous honeycomb silica framework as a solid-state chromogenic sensor for capturing ultra-trace cadmium ions from environmental/industrial samples By pubs.rsc.org Published On :: J. Mater. Chem. A, 2024, 12,30567-30581DOI: 10.1039/D4TA04574B, PaperAnju P. Veedu, Balasurendran Jeyakumar, Akhila Maheswari Mohan, Satheesh Kuppusamy, Pitchaiah K. Chinaraga, Manjula Muthurathinam, C. V. S. Brahmananda Rao, Sivaraman Nagarajan, Prabhakaran DeivasigamaniA solid-state naked-eye sensor composed of a mesoporous honeycomb structured silica monolith impregnated with a DMTHBD receptor offers a simple, rapid and eco-benign approach for the selective sensing of trace Cd2+, with brilliant color transitions.The content of this RSS Feed (c) The Royal Society of Chemistry Full Article
cadmium Unravelling Structure - Luminescence Relationship in Two Dimensional Antimony(III) Doped Cadmium (II) Halide Hybrids By pubs.rsc.org Published On :: J. Mater. Chem. C, 2024, Accepted ManuscriptDOI: 10.1039/D4TC03543G, Paper Open Access   This article is licensed under a Creative Commons Attribution 3.0 Unported Licence.Ashwath Kudlu, Dhritismita Sarma, Deep K Das, Alisha Basheer Shamla, Rangarajan Bakthavatsalam, Venkatesha R. Hathwar, Arup Mahata, Janardan KunduLuminescent zero dimensional (0D) antimony halide (Sb-X) hybrids showcase emissive properties (emission peak position; photoluminescence quantum yield-PLQY) that are strongly dependent on the local metal halide geometry/site asymmetry. However, controlling...The content of this RSS Feed (c) The Royal Society of Chemistry Full Article
cadmium Three in one: a cadmium bismuth vanadate NLO crystal exhibiting a large second-harmonic generation response and enhanced birefringence By pubs.rsc.org Published On :: Inorg. Chem. Front., 2024, 11,2384-2391DOI: 10.1039/D4QI00261J, Research ArticleShuya Liu, Conggang Li, Jinmiao Jiao, Yuheng She, Tinghui Zhang, Dianxing Ju, Ning Ye, Zhanggui Hu, Yicheng WuA novel vanadate NLO crystal Cd2BiVO6 was synthesized through spontaneous crystallization, exhibiting a large SHG response, an enhanced birefringence and a wide transmittance range.The content of this RSS Feed (c) The Royal Society of Chemistry Full Article
cadmium Study on the affinity sites of cadmium's binding to ligands by thermodynamics and nuclear magnetic resonance spectroscopy By pubs.rsc.org Published On :: Anal. Methods, 2024, Advance ArticleDOI: 10.1039/D3AY02253F, PaperJinsong Yu, Xu Huang, Xiuxiu Wu, Hui Cao, Min Yuan, Tai Ye, Fei XuAccording to the experimental parameters for the interaction of Cd(II) with ligands, the binding sites of Cys and GSH were –SH, –NH2 and –COOH, and the thermodynamic behaviour of Cd(II) with Cys/GSH in boric acid and HEPES buffers was different, exothermic in HEPES but endothermic in boric acid.To cite this article before page numbers are assigned, use the DOI form of citation above.The content of this RSS Feed (c) The Royal Society of Chemistry Full Article
cadmium Harnessing the UiO-67 metal–organic framework for advanced detection of cadmium ions in water bodies By pubs.rsc.org Published On :: RSC Adv., 2024, 14,35618-35627DOI: 10.1039/D4RA06811D, Paper Open Access   This article is licensed under a Creative Commons Attribution-NonCommercial 3.0 Unported Licence.Bhuvaneswari Selvaraj, Lakshmi Priya G., Selva BalasubramanianHeavy metal ions are hazardous pollutants that pose serious threats to ecosystems and human health, making it imperative to detect and monitor their presence in water for environmental protection.The content of this RSS Feed (c) The Royal Society of Chemistry Full Article
cadmium Retraction: Highly sensitive cadmium sulphide quantum dots as a fluorescent probe for estimation of doripenem in real human plasma: application to pharmacokinetic study By pubs.rsc.org Published On :: RSC Adv., 2024, 14,35992-35992DOI: 10.1039/D4RA90134G, Retraction Open Access   This article is licensed under a Creative Commons Attribution 3.0 Unported Licence.Marwa F. B. Ali, Baher I. Salman, Samiha A. Hussein, Mostafa A. MarzouqThe content of this RSS Feed (c) The Royal Society of Chemistry Full Article
cadmium catena-Poly[[diaquacadmium(II)]-μ2-3-(4-carboxylatophenyl)propionato] By scripts.iucr.org Published On :: 2019-07-19 In the title compound, [Cd(C10H8O4)(H2O)2)]n, the CdII cation is coordinated in a distorted trigonal–prismatic fashion. 3-(4-Carboxyphenyl)propionate (cpp) ligands connect the CdII cations into zigzag [Cd(cpp)(H2O)2)]n coordination polymer chains, which are oriented parallel to [101]. The chains aggregate into supramolecular layers oriented parallel to (10overline{1}) by means of O—H⋯O hydrogen bonding between bound water molecules and ligating cpp carboxylate O atoms. The layers stack in an ABAB pattern along [100] via other O—H⋯O hydrogen-bonding mechanisms also involving the bound water molecules. The crystal studied was an inversion twin. Full Article text
cadmium Poly[di(μ2-2-hydroxypropanoato)cadmium] By scripts.iucr.org Published On :: 2019-09-10 The asymmetric unit of the title inorganic–organic salt, poly[di(μ2-2-hydroxypropanoato)cadmium], [Cd(C3H5O3)2]n or [Cd(Hlac)2]n (H2lac = 2-hydroxypropanoic acid), comprises of a cadmium cation and two 2-hydroxypropanoate anions. The cadmium cation exhibits a distorted pentagonal–bipyramidal coordination environment defined by the hydroxy and carbonyl O atoms of the 2-hydroxypropanoate anions. The coordination mode leads to the formation of layers extending parallel to (010). O—H⋯O hydrogen bonding between the hydroxy and carbonyl groups stabilizes the structure packing. Full Article text
cadmium Di-μ3-chlorido-tetra-μ2-chlorido-dichloridotetrakis(N,N-diethylethane-1,2-diamine-κ2N,N')tetracadmium(II) By scripts.iucr.org Published On :: 2019-12-06 In the title compound, [Cd4Cl8(C6H16N2)4], the Cd2+ cations and Cl− anions form M4Cl8 clusters with six of the Cl− ions bridging Cd2+ cations and two being pendant. Each Cd2+ cation has distorted octahedral coordination completed by four Cl− ions and two N atoms of the asymmetrical bidentate amino ligand. The cluster consists of pairs of face-sharing hexahedra linked by a shared edge. Full Article text
cadmium Crystal structure of di-μ-chlorido-bis[dichlorido(l-histidinium-κO)cadmium(II)] By scripts.iucr.org Published On :: 2019-05-17 In the title compound, [Cd2(C6H9N3O2)2Cl6], the coordination polyhedra around the CdII cations are distorted trigonal bipyramids. Two of the chloride ions (one axial and one equatorial) are bridging to the other metal atom, leading to a Cd⋯Cd separation of 3.9162 (4) Å. The O atom of the l-histidinium cation lies in an axial site. In the crystal, numerous N—H⋯Cl, N—H⋯O, C—H⋯O and C—H⋯Cl hydrogen bonds link the molecules into a three-dimensional network. Theoretical calculations and spectroscopic data are available as supporting information. Full Article text
cadmium Crystal structure and Hirshfeld surface analysis of diiodido{N'-[(E)-(phenyl)(pyridin-2-yl-κN)methylidene]pyridine-2-carbohydrazide-κ2N',O}cadmium(II) By scripts.iucr.org Published On :: 2019-06-25 In each of the two independent molecules in the asymmetric unit of the title compound, [CdI2(C18H14N4O)], the N,O,N'-tridentate N'-[(E)-(phenyl)(pyridin-2-yl-κN)methylidene]pyridine-2-carbohydrazide ligand and two iodide anions form an I2N2O pentacoordination sphere, with a distorted square-pyramidal geometry, with an I atom in the apical position. Both molecules feature an intramolecular N—H⋯N hydrogen bond. In the crystal, weak aromatic π–π stacking interactions [centroid–centroid separation = 3.830 (2) Å] link the molecules into dimers. Full Article text
cadmium Crystal structure and chemistry of tricadmium digermanium tetraarsenide, Cd3Ge2As4 By scripts.iucr.org Published On :: 2019-08-02 A cadmium germanium arsenide compound, Cd3Ge2As4, was synthesized using a double-containment fused quartz ampoule method within a rocking furnace and a melt-quench technique. The crystal structure was determined from single-crystal X-ray diffraction (SC-XRD), scanning and transmission electron microscopies (i.e. SEM, STEM, and TEM), and selected area diffraction (SAD) and confirmed with electron backscatter diffraction (EBSD). The chemistry was verified with electron energy loss spectroscopy (EELS). Full Article text
cadmium Crystal structure of bis[2-(1H-benzimidazol-2-yl-κN3)aniline-κN]bis(nitrato-κO)cadmium(II) By scripts.iucr.org Published On :: 2019-09-12 In the title compound, [Cd(NO3)2(C13H11N3)2], the CdII atom lies on a twofold rotation axis and is coordinated by four N atoms and two O atoms, provided by two bidentate 2-(1H-benzimidazol-2-yl)aniline ligands, and two nitrato O atoms, forming a distorted octahedral geometry [range of bond angles around the Cd atom = 73.82 (2)–106.95 (8)°]. In the ligand, the dihedral angle between the aniline ring and the benzimidazole ring system is 30.43 (7)°. The discrete complex molecule is stabilized by an intramolecular N—H⋯O hydrogen bond. In the crystal, intermolecular N—H⋯O hydrogen bonds link the molecules, forming a three-dimensional network. Full Article text
cadmium Crystal structure and photoluminescence properties of catena-poly[[bis(1-benzyl-1H-imidazole-κN3)cadmium(II)]-di-μ-azido-κ4N1:N3] By scripts.iucr.org Published On :: 2019-10-29 The new title one-dimensional CdII coordination polymer, [Cd(C10H10N2)2(μ1,3-N3)2]n, has been synthesized and structurally characterized by single-crystal X-ray diffraction. The asymmetric unit consists of a CdII ion, one azide and one 1-benzylimidazole (bzi) ligand. The CdII ion is located on an inversion centre and is surrounded in a distorted octahedral coordination sphere by six N atoms from four symmetry-related azide ligands and two symmetry-related bzi ligands. The CdII ions are linked by double azide bridging ligands within a μ1,3-N3 end-to-end (EE) coordination mode, leading to a one-dimensional linear structure extending parallel to [100]. The supramolecular framework is stabilized by the presence of weak C—H⋯N interactions, π–π stacking [centroid-to-centroid distance of 3.832 (2) Å] and C—H⋯π interactions between neighbouring chains. Full Article text
cadmium The crystal structures and Hirshfeld surface analyses of a cadmium(II) and a zinc(II) mononuclear complex of the new tetrakis-substituted pyrazine ligand N,N',N'',N'''-[pyrazine-2,3,5,6-tetrayltetrakis(methylene)]tetrakis By scripts.iucr.org Published On :: 2020-02-18 The whole molecule of the cadmium(II) complex, diiodido{N,N',N'',N'''-[pyrazine-2,3,5,6-tetrayltetrakis(methylene)]tetrakis(N-methylaniline)-κ3N2,N1,N6}cadmium(II), [CdI2(C36H40N6)], (I), of the ligand N,N',N'',N'''-[pyrazine-2,3,5,6-tetrayltetrakis(methylene)]tetrakis(N-methylaniline) (L), is generated by a twofold rotation symmetry; the twofold axis bisects the cadmium atom and the nitrogen atoms of the pyrazine ring. The ligand coordinates in a mono-tridentate manner and the cadmium atom has a fivefold CdN3I2 coordination environment with a distorted shape. In the zinc(II) complex, dichlorido{N,N',N'',N'''-[pyrazine-2,3,5,6-tetrayltetrakis(methylene)]tetrakis(N-methylaniline)-κ3N2,N1,N6}zinc(II) dichloromethane 0.6-solvate, [ZnCl2(C36H40N6)]·0.6CH2Cl2, (II), ligand L also coordinates in a mono-tridentate manner and the zinc atom has a fivefold ZnN3Cl2 coordination environment with a distorted shape. It crystallized as a partial dichloromethane solvate. In the crystal of I, the complex molecules are linked by weak C—H⋯I contacts, forming ribbons propagating along [100]. In the crystal of II, the complex molecules are linked by a series of C—H⋯π interactions, forming layers lying parallel to the (1overline{1}1) plane. In the crystals of both compounds there are metal–halide⋯π(pyrazine) contacts present. The Hirshfeld analyses confirm the importance of the C—H⋯halide contacts in the crystal packing of both compounds. Full Article text
cadmium Land use affects potential health risks of cadmium and lead soil contaminants By ec.europa.eu Published On :: Thu, 12 Sep 2013 11:35:22 +0100 Exposure to polluted soil can affect human health, but the risk may vary depending on the soil type. A recent study has shown that the differing amounts of cadmium and lead that can be dissolved in the human digestive system can be predicted for contaminated agricultural, urban and woody habitat soils using a model. Its authors suggest this is a useful method for assessing the risks of contaminated land. Full Article
cadmium What are the health costs of cadmium contamination in fertilisers? By ec.europa.eu Published On :: Thu, 20 Mar 2014 9:23:19 GMT The health impacts of consuming food that has been grown using cadmium-contaminated fertilisers are an increasing concern. New Danish research has estimated that the annual monetary cost of these impacts is 15.53 per km2 of agricultural land treated with mineral fertilisers. This cost rises to 37.04 per km2 if pig manure is used. Full Article
cadmium Moss is useful bioindicator of cadmium air pollution, new study finds By www.fs.fed.us Published On :: 2016-04-06 Moss growing on urban trees is a useful bio-indicator of cadmium air pollution in Portland, Oregon, a U.S. Forest Service Pacific Northwest Research Station-led study has found. The work—the first to use moss to generate a rigorous and detailed map of air pollution in a U.S. city—is published online in the journal Science of the Total Environment. Full Article
cadmium WRKY13 Enhances Cadmium Tolerance by Promoting D-CYSTEINE DESULFHYDRASE and Hydrogen Sulfide Production By www.plantphysiol.org Published On :: 2020-05-08T08:30:48-07:00 Hydrogen sulfide (H2S), a plant gasotransmitter, functions in the plant response to cadmium (Cd) stress, implying a role for cysteine desulfhydrase in producing H2S in this process. Whether d-CYSTEINE DESULFHYDRASE (DCD) acts in the plant Cd response remains to be identified, and if it does, how DCD is regulated in this process is also unknown. Here, we report that DCD-mediated H2S production enhances plant Cd tolerance in Arabidopsis (Arabidopsis thaliana). When subjected to Cd stress, a dcd mutant accumulated more Cd and reactive oxygen species and showed increased Cd sensitivity, whereas transgenic lines overexpressing DCD had decreased Cd and reactive oxygen species levels and were more tolerant to Cd stress compared with wild-type plants. Furthermore, the expression of DCD was stimulated by Cd stress, and this up-regulation was mediated by a Cd-induced transcription factor, WRKY13, which bound to the DCD promoter. Consistently, the higher Cd sensitivity of the wrky13-3 mutant was rescued by the overexpression of DCD. Together, our results demonstrate that Cd-induced WRKY13 activates DCD expression to increase the production of H2S, leading to higher Cd tolerance in plants. Full Article
cadmium Cadmium isotope fractionation reveals genetic variation in Cd uptake and translocation by <i>Theobroma cacao</i> and role of natural resistance-associated macrophage protein 5 and heavy metal ATPase-family transporters By feeds.nature.com Published On :: 2020-05-01 Full Article
cadmium Zinc, copper, or magnesium supplementation against cadmium toxicity [electronic resource] / Vesna Matović ... [et al.] By prospero.murdoch.edu.au Published On :: Full Article
cadmium Selenium modulates cadmium-induced ultrastructural and metabolic changes in cucumber seedlings By feeds.rsc.org Published On :: RSC Adv., 2020, 10,17892-17905DOI: 10.1039/D0RA02866E, Paper Open Access   This article is licensed under a Creative Commons Attribution-NonCommercial 3.0 Unported Licence.Hongyan Sun, Xiaoyun Wang, Huimin Li, Jiahui Bi, Jia Yu, Xianjun Liu, Huanxin Zhou, Zhijiang RongIntensive insight into the potential mechanisms of Se-induced Cd tolerance in cucumber seedlings is essential for further improvement of vegetable crop cultivation and breeding to obtain high yields and quality in Cd-contaminated soil.The content of this RSS Feed (c) The Royal Society of Chemistry Full Article
cadmium [ASAP] Perspective on Cadmium and Lead in Cocoa and Chocolate By feedproxy.google.com Published On :: Tue, 28 Apr 2020 04:00:00 GMT Journal of Agricultural and Food ChemistryDOI: 10.1021/acs.jafc.9b08295 Full Article
cadmium Characteristic synergistic cytotoxic effects toward cells in graphene oxide dressing with cadmium and copper ions By pubs.rsc.org Published On :: Toxicol. Res., 2019, 8,908-917DOI: 10.1039/C9TX00146H, PaperYiyang Dong, Yulin Chang, Haidi Gao, Victoria Arantza León Anchustegui, Qiang Yu, Haifang Wang, Jia-Hui Liu, Shihui WangCadmium ions exerted synergistic toxic effects with graphene oxide on Hela cells.The content of this RSS Feed (c) The Royal Society of Chemistry Full Article
cadmium Cadmium telluride quantum dot-exposed human bronchial epithelial cells: a further study of the cellular response by proteomics By pubs.rsc.org Published On :: Toxicol. Res., 2019, 8,994-1001DOI: 10.1039/C9TX00126C, PaperYan-Ming Xu, Heng Wee Tan, Wei Zheng, Zhan-Ling Liang, Fei-Yuan Yu, Dan-Dan Wu, Yue Yao, Qiu-Hua Zhong, Rui Yan, Andy T. Y. LauA comparative proteome analysis was conducted to identify global changes in the protein expression profiles of cadmium telluride quantum dot-exposed human bronchial epithelial BEAS-2B cells.The content of this RSS Feed (c) The Royal Society of Chemistry Full Article
cadmium Characterization of large area cadmium telluride films and solar cells deposited on moving substrates by close spaced sublimation By digital.lib.usf.edu Published On :: Sat, 15 Feb 2014 18:10:14 -0400 Full Article
cadmium Characterization of cadmium zinc telluride solar cells By digital.lib.usf.edu Published On :: Sat, 15 Feb 2014 18:10:15 -0400 Full Article
cadmium Development of cadmium selenide as an absorber layer for tandem solar cells By digital.lib.usf.edu Published On :: Sat, 15 Feb 2014 18:11:29 -0400 Full Article
cadmium Characterization of cadmium zinc telluride films and solar cells on glass and flexible substrates by rf sputtering By digital.lib.usf.edu Published On :: Sat, 15 Feb 2014 18:12:44 -0400 Full Article
cadmium Cadmium zinc telluride solar cells by close spaced sublimation By digital.lib.usf.edu Published On :: Sat, 15 Feb 2014 18:14:17 -0400 Full Article
cadmium Characterization of cadmium zinc telluride solar cells by RF sputtering By digital.lib.usf.edu Published On :: Sat, 15 Feb 2014 18:14:44 -0400 Full Article
cadmium Development of window layer for high efficiency high bandgap cadmium selenide solar cell for 4-terminal tandem solar cell applications By digital.lib.usf.edu Published On :: Sat, 15 Feb 2014 18:35:05 -0400 Full Article