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Investigation of 3,4-ethylenedioxythiophene and 3,4-dimethoxythiophene as linkage units for multi-dimensional dimeric acceptors

J. Mater. Chem. C, 2024, Accepted Manuscript
DOI: 10.1039/D4TC03646H, Paper
Shaohui Yuan, Baofa Lan, Xinyi Ji, Jiaying Wang, Wenkai Zhao, Guankui Long, Xiangjian Wan, Bin Kan, Yongsheng Chen
Despite the versatile processibility of three-dimensional CH8 series acceptors in efficient organic solar cells (OSCs), understanding the relationship between linkage units and performance continues to present significant challenges. To address...
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dimension

Unravelling Structure - Luminescence Relationship in Two Dimensional Antimony(III) Doped Cadmium (II) Halide Hybrids

J. Mater. Chem. C, 2024, Accepted Manuscript
DOI: 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 Kundu
Luminescent 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...
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Microfluidic synthesis of monodispersed sharp emitting perovskite CsPbBr3 quantum dots via multidimensional parameterization

J. Mater. Chem. C, 2024, Advance Article
DOI: 10.1039/D4TC04104F, Paper
Yunhao Ning, Shuo Guan, Chuantong Cheng, Bao Zhang, Bingyu Qin, Beiju Huang
A microfluidic chip is employed for continuous synthesis of CsPbBr3 perovskite quantum dots, which feature tunable emission across various dimensions and wavelengths, and effects of multidimensional parameters on their properties are investigated.
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Room-temperature gas sensors based on low-dimensional nanomaterials

J. Mater. Chem. C, 2024, Advance Article
DOI: 10.1039/D4TC03729D, Review Article
Young-Woo Jang, Jeong-Wan Jo, Sung Kyu Park, Jaehyun Kim
We provide a roadmap for room-temperature operable low-dimensional semiconductor-type gas sensors, along with recent trends in their application fields for a comprehensive overview.
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Multidimensionally ordered mesoporous intermetallics: Frontier nanoarchitectonics for advanced catalysis

Chem. Soc. Rev., 2024, Advance Article
DOI: 10.1039/D4CS00484A, Tutorial Review
Hao Lv, Ben Liu
This perspective summarizes recent progress in rational design and synthesis of multidimensionally ordered mesoporous intermetallics, and propose new frontier nanoarchitectonics for designing high-performance functional nanocatalysts.
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dimension

Emerging two-dimensional ferromagnetic semiconductors

Chem. Soc. Rev., 2024, 53,11228-11250
DOI: 10.1039/D4CS00378K, Review Article
Denan Kong, Chunli Zhu, Chunyu Zhao, Jijian Liu, Ping Wang, Xiangwei Huang, Shoujun Zheng, Dezhi Zheng, Ruibin Liu, Jiadong Zhou
The atomic structures, physical properties, preparation methods, growth mechanisms, magnetism modulation techniques, and potential applications of emerging 2D ferromagnetic semiconductors are investigated.
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Spin-degree manipulation for one-dimensional room-temperature ferromagnetism in a haldane system

Mater. Horiz., 2024, Advance Article
DOI: 10.1039/D4MH00134F, Communication
Pengfei Tan, Chuanhui Zhu, Xiaosheng Ni, Han-Qing Wu, Shuang Zhao, Tao Xia, Jinjin Yang, Tao Han, Mei-Huan Zhao, Yifeng Han, Yuanhua Xia, Zheng Deng, Muwei Wu, Dao-Xin Yao, Man-Rong Li
Exotic ferromagnetic order up to ∼700 K has been introduced in the well-known S = 1 Haldane system nickelate, Y2BaNiO5, induced by locally mixed S = 1 and 1/2 states (d8-Ni2+ and d9-Ni+) and oxygen vacancies along the finite chain segments.
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Global Dimensions of U.S. Monetary Policy [electronic journal].

National Bureau of Economic Research




dimension

Combination of dimensional reduction and active site addition strategies for preparing unique {RE9}-cluster-based MOFs: efficient CO2 fixation and Knoevenagel condensation

Inorg. Chem. Front., 2024, 11,2071-2080
DOI: 10.1039/D3QI02527F, Research Article
Ying Zhao, Dan Wu, Yidan Qiao, Guo-Ping Yang, Lu-Fang Ma, Yao-Yu Wang
A series of 2D {RE9}-cluster-based rare-earth MOFs were built by dimensional reduction and active site addition strategies. They exhibit excellent catalytic activity in CO2 fixation and Knoevenagel condensation under mild conditions.
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Bulk single crystal growth and optoelectronic properties of the quasi-two-dimensional perovskites (CH3NH3)3Bi2X9 (X− = Br− and I−)

Inorg. Chem. Front., 2024, 11,2442-2456
DOI: 10.1039/D3QI02687F, Research Article
Zhiyuan Li, Xiangjun Wang, Peng Zhao, Jingquan Liu, Xiangxin Tian
Single crystals of MA3Bi2X9 (X = Br, I) with quasi-two-dimensional structures were successfully grown and the relationship between the compositions, dimensionality, and properties were discussed.
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Incorporation of One-Dimensional Electron-Rich Chain in Viologen-based Coordination Polymers for Super Photochromic Properties and Improved Optical Applications in Polyvinyl Alcohol Film

Inorg. Chem. Front., 2024, Accepted Manuscript
DOI: 10.1039/D4QI00200H, Research Article
Yong-Sheng Shi, Tong Xiao, Dong-Dong Yang, Xiangjun Zheng
A viologen derivative- and a carboxylic acid -based one-dimensional (1D) cocrystal Zn(Ⅱ) coordination polymer, {[Zn(bcbpy)2][Zn(sip)Cl]·4H2O}n (1, bcbpy = 1,1'-bis (3-carboxybenzyl)-4,4'-bipyridinium, sip = 5-Sulfoisophthalate) has been produced solvothermally and structurally characterized....
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5-axis CNC micro-milling machine for three-dimensional microfluidics

Lab Chip, 2024, Accepted Manuscript
DOI: 10.1039/D4LC00496E, Paper
Open Access
  This article is licensed under a Creative Commons Attribution 3.0 Unported Licence.
Mitchell Modarelli, Devin Kot-Thompson, Kazunori Hoshino
The gold standard of microfluidic fabrication techniques, SU-8 patterning, requires photolithography equipment and facilities and is not suitable for 3D microfluidics. A 3D printer is more convenient and may achieve...
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Golden Warrior for the Multidimensional Trophy




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King’s Battalion bags the Multidimensional Trophy




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Resolving phytosterols in microalgae using offline two-dimensional reversed phase liquid chromatography-supercritical fluid chromatography coupled with quadrupole time-of-flight mass spectrometry

Anal. Methods, 2024, 16,2278-2285
DOI: 10.1039/D3AY02261G, Paper
Magali Batteau, Elodie Bouju, Adriana Ramirez-Romero, Sylvie Nuccio, René De Vaumas, Florian Delrue, Karine Faure
Development of an off-line LC-SFc-MS method, separation of sterol isomers in algal unsaponifiable fractions, elution pattern helping in the reduction of structural candidates.
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A three-dimensional network structure of metal-based nanozymes for the construction of colorimetric sensors for the detection of antioxidants

Anal. Methods, 2024, 16,2292-2300
DOI: 10.1039/D3AY02199H, Paper
Shuo Qin, Bin Liu, Yuting Xue, Ruixue Zhao, Guo Wang, Kai Li, Lirong Zheng, Pingyang Wang, Tianhao Tang, Yue Yang, Zhengbo Chen, Xia Zuo
Although many excellent nanozymes have been developed, designing and synthesizing highly active nanozymes is still challenging.
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Three-dimensional hotspot structures constructed from nanoporous gold with a V-cavity and gold nanoparticles for surface-enhanced Raman scattering

Anal. Methods, 2024, Advance Article
DOI: 10.1039/D4AY00348A, Paper
Yang Xu, Yan Wu, Jianjun Wei, Yuanyu Zhao, Peili Xue
A nanoporous gold V-shaped resonant cavity (NPGVRC) structure constructed with plasmonic resonance coupling effect. The NPGVRC has excellent SERS performance and 3D hotspot properties.
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Linking local microstructure to fracture location in a two-dimensional amorphous solid under isotropic strain

Soft Matter, 2024, Advance Article
DOI: 10.1039/D4SM00486H, Paper
Open Access
  This article is licensed under a Creative Commons Attribution 3.0 Unported Licence.
Max Huisman, Axel Huerre, Saikat Saha, John C. Crocker, Valeria Garbin
Machine learning predicts possible crack location in experiments of a fracturing colloid monolayer, shown along with the actual crack path.
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Construction of a zero-dimensional halide perovskite in micron scale towards a deeper understanding of phase transformation mechanism and fluorescence applications

RSC Adv., 2024, 14,35490-35497
DOI: 10.1039/D4RA06404F, Paper
Open Access
  This article is licensed under a Creative Commons Attribution 3.0 Unported Licence.
Lili Xie, Haiyan Qiu, Yuxin Chen, Yingxue Lu, Yanyan Chen, Lanlan Chen, Shanwen Hu
A zero-dimensional halide perovskite in micron scale is constructed to gain a deeper understanding of phase transformation mechanism and better fluorescence applications.
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Upconversion nanoparticles incorporated with three-dimensional graphene composites for electrochemical sensing of baicalin from natural plants

RSC Adv., 2024, 14,36084-36092
DOI: 10.1039/D4RA06540A, Paper
Open Access
Na Zhang, Yilin Wu, Tian Liang, Yongxiang Su, Xusheng Xie, Tianren Zhang, Hongyan Wang, Keying Zhang, Rongli Jiang
The fabrication of UCNP-3DG and its application in electrochemical detection of Bn in natural plant samples.
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Computational discovery of two-dimensional tetragonal group IV–V monolayers

RSC Adv., 2024, 14,36173-36180
DOI: 10.1039/D4RA06623E, Paper
Open Access
Qiubao Lin, Jungang Huang, Yimei Fang, Feng Zheng, Kaixuan Chen, Shunqing Wu, Zi-Zhong Zhu
Structural prediction of a stable tetragonal Td4 phase of 2D group IV–V monolayers.
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Bulk photovoltaic effect in a zero-dimensional room-temperature molecular ferroelectric [C8N2H22]1.5[Bi2I9]

Dalton Trans., 2024, Accepted Manuscript
DOI: 10.1039/D4DT02698E, Paper
Zhibo Chen, Tianhong Luo, Jinrong Wen, Zhanqiang Liu, Jingshan Hou, Yongzheng Fang, Ganghua Zhang
Non-toxic molecular ferroelectrics have attracted significant interest due to their unique flexibility, low costs, and environmental friendliness. However, the variety of such materials with narrow bandgaps and above room temperature...
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Enhancing inter-domain connectivity by reducing fractal dimensions: the key to passivating deep traps in organic photovoltaics

Energy Environ. Sci., 2024, 17,8893-8903
DOI: 10.1039/D4EE02961E, Paper
Yuang Fu, Luhang Xu, Yuhao Li, Emily J. Yang, Yu Guo, Guilong Cai, Pok Fung Chan, Yubin Ke, Chun-Jen Su, U-Ser Jeng, Philip C. Y. Chow, Ji-Seon Kim, Man-Chung Tang, Xinhui Lu
Researchers in CUHK identified isolated non-fullerene acceptor (NFA) domains as the morphological origin of deep electron traps in organic photovoltaics. They showcased effective trap passivation by reducing the fractal dimensions of NFA networks.
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Novel TPMS carbon-based monolithic catalysts by three-dimensional printing for enhancement of nitrobenzene hydrogenation reaction

React. Chem. Eng., 2024, Advance Article
DOI: 10.1039/D4RE00049H, Paper
Haoyang Wang, Haoran Tian, Qi Zhang, Li Zhang
Preparation of periodic curved surface, structured, carbon-based catalysts using a 3D printing method achieved good results in the hydrogenation of nitrobenzene to aniline in a packed-bed micro-reactor.
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Two-dimensional silicene-based technologies in oncology: an emerging avenue

Nanoscale, 2024, 16,20048-20059
DOI: 10.1039/D4NR03565H, Minireview
Joydip Sengupta, Chaudhery Mustansar Hussain
Silicene-based technologies can be applied in photonic hyperthermia and drug delivery for oncology treatment.
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A negative photoconductivity photodetector based on two-dimensional Nb3Cl8

Nanoscale, 2024, 16,20312-20318
DOI: 10.1039/D4NR03376K, Paper
Open Access
  This article is licensed under a Creative Commons Attribution 3.0 Unported Licence.
Bom Lee, Xiaojie Zhang, Jinsu Kang, Byung Joo Jeong, Sooheon Cho, Kyung Hwan Choi, Jiho Jeon, Sang Hoon Lee, Dahoon Kim, Yeong Hyeop Kim, Ji-Hee Kim, Hak Ki Yu, Jae-Young Choi
We developed a Nb3Cl8-based photodetector with negative photoconductivity from 400 to 1050 nm, featuring high electron mobility, a strong Ion/Ioff ratio, and high responsivity, making it ideal for energy-efficient optoelectronic applications.
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Investigation of the temperature effect on the formation of a two-dimensional self-assembled network at the liquid/solid interface

Nanoscale, 2024, Advance Article
DOI: 10.1039/D4NR02600D, Paper
Open Access
Tamara Rinkovec, Eveline Croket, Hai Cao, Jeremy N. Harvey, Steven De Feyter
In this work, we investigate the temperature effect on the formation of self-assembled molecular networks (SAMNs) at the liquid/solid interface, focusing on an alkylated achiral glycine derivative at the 1-phenyloctane/HOPG interface.
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Current progress and frontiers in three-dimensional macroporous carbon-based aerogels for electromagnetic wave absorption: a review

Nanoscale, 2024, Advance Article
DOI: 10.1039/D4NR03738C, Review Article
Han Ding, Bo Hu, Yu Wang, Yunchen Du
This article provides a timely review on the construction of three-dimensional macroporous carbon-based aerogels and their application in the field of electromagnetic absorption.
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Recent Progress of Two-dimensional Bi2O2Se and its Heterostructures

Nanoscale, 2024, Accepted Manuscript
DOI: 10.1039/D4NR03769C, Review Article
Xiaoyu Hu, Wen He, Dongbo Wang, Lei Chen, Xiangqian Fan, Duoduo Ling, Yanghao Bi, Wei Wu, Shuai Ren, Ping Rong, Yinze Zhang, Yajie Han, Jinzhong Wang
Ever since the identification of graphene, the research on two-dimensional (2D) materials has garnered significant attention. As a typical layered bismuth oxyselenide, Bi2O2Se has attracted growing interest not only due...
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Electrical transport phenomena in two-dimensional metallic 2H-NbSe2: an experimental and theoretical study

Nanoscale, 2024, Advance Article
DOI: 10.1039/D4NR03369H, Paper
Jeongmin Kim, Seonhye Youn, Damin Lee, Chan Woong Kim, Hongjae Moon, Seok-Hwan Chung, Hoyoung Kim, Dong Hwan Kim, Sumin Kim, Jong Wook Roh, Joonho Bang, Wooyoung Lee
Two-dimensional (2D) metallic transition metal dichalcogenides (TMDCs) have attracted extensive interest in various fields owing to their unique electronic properties.
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Multi-dimensional vines

Find imaginative ways to fit vines into your landscape, says Vrinda Kumble




dimension

Three-dimensional COF crystals keep growing

Strategy yields crystals big enough to reveal previously elusive structural details




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Two-dimensional entertainment




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Cyberattacks get a new dimension: Political and economic intentions of cybercriminals

Threat trends show political and economic intentions of cybercriminals.




dimension

Remote Working: Working from home brings a whole new dimension to cybersecurity

There are dozens of ways to access networks and today, remote offices are common.




dimension

India exploiting corona for unprecedented dimension in IOK

LONDON: British Kashmiri Organisations have shown deep concern over brutalities of the Indian army keeping up in occupied Kashmir.Both the Kashmir Youth Assembly and the Organisation of Kashmir...

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dimension

'India exploiting corona for unprecedented dimension in IOK'

LONDON: British Kashmiri Organisations have shown deep concern over brutalities of the Indian army keeping up in occupied Kashmir.Both the Kashmir Youth Assembly and the Organisation of Kashmir...

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dimension

India exploiting corona for unprecedented dimension in IOK

LONDON: British Kashmiri Organisations have shown deep concern over brutalities of the Indian army keeping up in occupied Kashmir.Both the Kashmir Youth Assembly and the Organisation of Kashmir...

[[ This is a content summary only. Visit my website for full links, other content, and more! ]]




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OECD Secretary-General Angel Gurría presents new Multi-Dimensional Country Review to Peruvian President Ollanta Humala

Economic and social reforms over the past two decades have enabled Peru to significantly improve growth and well-being while raising incomes and reducing poverty.




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Measuring Multidimensional Well-being and Sustainable Development - Insight blog

As part of the Better Life Index, Sustainable Development forms a multi-faceted key role in the way the OECD carries out its policy analysis. This latest blog from the OECD's Chief Statistician outlines how this is done.




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Poly[(μ4-5,7-di­hydro-1H,3H-dithieno[3,4-b:3',4'-e]pyrazine-κ4N:N':S:S')tetra-μ3-iodido-tetra­copper]: a three-dimensional copper(I) coordination polymer

The reaction of ligand 5,7-di­hydro-1H,3H-dithieno[3,4-b:3',4'-e]pyrazine (L) with CuI lead to the formation of a three-dimensional coordination polymer, incorporating the well known [CuxIx]n staircase motif (x = 4). These polymer [Cu4I4]n chains are linked via the N and S atoms of the ligand to form the three-dimensional coordination polymer poly[(μ4-5,7-di­hydro-1H,3H-dithieno[3,4-b:3',4'-e]pyrazine-κ4N:N':S:S')tetra-μ3-iodido-tetra­copper], [Cu4I4(C8H8N2S2)]n (I). The asymmetric unit is composed of half a ligand mol­ecule, with the pyrazine ring located about a center of symmetry, and two independent copper(I) atoms and two independent I− ions forming the staircase motif via centers of inversion symmetry. The framework is consolidated by C—H⋯I hydrogen bonds.




dimension

Poly[[μ4-3,4,8,10,11,13-hexa­hydro-1H,6H-bis­([1,4]di­thio­cino)[6,7-b:6',7'-e]pyrazine]di-μ-iodido-dicopper(I)]: a two-dimensional copper(I) coordination polymer

The reaction of ligand 3,4,8,10,11,13-hexa­hydro-1H,6H-bis­([1,4]di­thio­cino)[6,7-b:6',7'-e]pyrazine (L) with CuI led to the formation of a two-dimensional coordination polymer, incorporating a [Cu2I2] motif. These units are linked via the four S atoms of the ligand to form the title two-dimensional coordination poly­mer, poly[[μ4-3,4,8,10,11,13-hexa­hydro-1H,6H-bis­([1,4]di­thio­cino)[6,7-b:6',7'-e]pyrazine]di-μ-iodido-dicopper(I)], [Cu2I2(C12H16N2S4)]n, (I). The asymmetric unit is composed of a ligand mol­ecule, two copper(I) atoms and two I− ions. Both copper(I) atoms are fourfold S2I2 coordinate with almost regular trigonal-pyramidal environments. In the crystal, the layers, lying parallel to (102), are linked by C—H⋯I hydrogen bonds, forming a supra­molecular framework.




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The crystal structure of (RS)-7-chloro-2-(2,5-di­meth­oxy­phen­yl)-2,3-di­hydro­quinazolin-4(1H)-one: two hydrogen bonds generate an elegant three-dimensional framework structure

In the title compound, C61H15ClN2O3, the heterocyclic ring adopts an envelope conformation, folded across the N⋯N line, with the 2,5-di­meth­oxy­phenyl unit occupying a quasi-axial site. There are two N—H⋯O hydrogen bonds in the structure: one hydrogen bond links mol­ecules related by a 41 screw axis to form a C(6) chain, and the other links inversion-related pairs of mol­ecules to form an R22(8) ring. The ring motif links all of the chains into a continuous three-dimensional framework structure. Comparisons are made with the structures of some related compounds.




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Twelve 4-(4-meth­oxy­phen­yl)piperazin-1-ium salts containing organic anions: supra­molecular assembly in one, two and three dimensions

Twelve 4-(4-meth­oxy­phen­yl)piperazin-1-ium salts containing organic anions have been prepared and structurally characterized. The monohydrated benzoate, 4-fluoro­benzoate, 4-chloro­benzoate and 4-bromo­benzoate salts, C11H17N2O+·C7H5O2−·H2O (I), C11H17N2O+·C7H4FO2−·H2O (II), C11H17N2O+·C7H4ClO2−·H2O (III), and C11H17N2O+·C7H4BrO2−·H2O (IV), respectively, are isomorphous and all exhibit disorder in the 4-meth­oxy­phenyl unit: the components are linked by N—H⋯O and O—H⋯O hydrogen bond to form chains of rings. The unsolvated 2-hy­droxy­benzoate, pyridine-3-carboxyl­ate and 2-hy­droxy-3,5-di­nitro­benzoate salts, C11H17N2O+·C7H5O3− (V), C11H17N2O+·C6H4NO2− (VI) and C11H17N2O+·C7H3N2O7− (VII), respectively, are all fully ordered: the components of (V) are linked by multiple N—H⋯O hydrogen bonds to form a chain of rings; those of (VI) are linked into a three-dimensional framework by a combination of N—H⋯O, C—H⋯O and C—H⋯N hydrogen bonds and those of (VII), where the anion has a structure reminiscent of the picrate anion, are linked into a three-dimensional array by N—H⋯O and C—H⋯O hydrogen bonds. The hydrogensuccinate and hydrogenfumarate salts, C11H17N2O+·C4H5O4− (VIII) and C11H17N2O+·C4H3O3− (IX), respectively, are isomorphous, and both exhibit disorder in the anionic component: N—H⋯O and O—H⋯O hydrogen bonds link the ions into sheets, which are further linked by C—H⋯π(arene) inter­actions. The anion of the hydrogenmaleate salt, C11H17N2O+·C4H3O3− (X), contains a very short and nearly symmetrical O⋯H⋯O hydrogen bond, and N—H⋯O hydrogen bonds link the anions into chains of rings. The ions in the tri­chloro­acetate salt, C11H17N2O+·C2Cl3O2− (XI), are linked into simple chains by N—H⋯O hydrogen bonds. In the hydrated chloranilate salt, 2C11H17N2O+·C6Cl2O42−·2H2O (XII), which crystallizes as a non-merohedral twin, the anion lies across a centre of inversion in space group P21/n, and a combination of N—H⋯O and O—H⋯O hydrogen bonds generates complex sheets. Comparisons are made with the structures of some related compounds.




dimension

One-dimensional ladder gallium coordination polymer

A one-dimensional ladder-type coordination polymer, poly[[(μ2-hydroxido)(μ2-1H-pyrazole-3,5-di­carboxyl­ato)gallium(III)] monohydrate], [Ga(C5H2N2O4)(OH)(H2O)]n or [Ga(HPDC)(OH)(H2O)]n, I, isotypic with a V3+ coordination polymer previously reported by Chen et al. [J. Coord. Chem. (2008). 61, 3556–3567] was prepared from Ga3+ and pyrazole-3,5-di­carb­oxy­lic acid monohydrate (H3PDC·H2O). Compound I was isolated using three distinct experimental methods: hydro­thermal (HT), microwave-assisted (MWAS) and one-pot (OP) and the crystallite size should be fine-tuned according to the method employed. The coordination polymeric structure is based on a dimeric Ga3+ moiety comprising two μ2-bridging hydroxide groups, which are inter­connected by HPDC2− anionic organic linkers. The close packing of individual polymers is strongly directed by the supra­molecular inter­actions, namely several O—H⋯O and N—H⋯O hydrogen-bonding inter­actions.




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Crystal structure of a two-dimensional coordination polymer of formula [Zn(NDC)(DEF)] (H2NDC is naphthalene-2,6-di­carb­oxy­lic acid and DEF is N,N-di­ethyl­formamide)

A zinc metal–organic framework, namely poly[bis­(N,N-di­ethyl­formamide)(μ4-naphthalene-2,6-di­carboxyl­ato)(μ2-naphthalene-2,6-di­carboxyl­ato)dizinc(II)], [Zn(C12H6O4)(C15H11NO)]n, built from windmill-type secondary building units and forming zigzag shaped two-dimensional stacked layers, has been solvothermally synthesized from naphthalene-2,6-di­carb­oxy­lic acid and zinc(II) acetate as the metal source in N,N-di­ethyl­formamide containing small amounts of formic acid.




dimension

Crystal structure and Hirshfeld surface analysis of poly[tris­(μ4-benzene-1,4-di­carboxyl­ato)tetra­kis­(di­methyl­formamide)­trinickel(II)]: a two-dimensional coordination network

The crystal structure of the title compound, [Ni3(C8H4O4)3(C3H7NO)4], is a two-dimensional coordination network formed by trinuclear linear Ni3(tp)3(DMF)4 units (tp = terephthalate = benzene-1,4-di­carboxyl­ate and DMF = di­methyl­formamide) displaying a characteristic coordination mode of acetate groups in polynuclear metal–organic compounds. Individual trinuclear units are connected through tp anions in a triangular network that forms layers. One of the DMF ligands points outwards and provides inter­actions with equivalent planes above and below, leaving the second ligand in a structural void much larger than the DMF mol­ecule, which shows positional disorder. Parallel planes are connected mainly through weak C—H⋯O, H⋯H and H⋯C inter­actions between DMF mol­ecules, as shown by Hirshfeld surface analysis.




dimension

Crystal structure of a two-dimensional metal–organic framework assembled from lithium(I) and γ-cyclo­dextrin

The crystal structure of the polymeric title compound, catena-poly[[[di­aqua­lithium]-μ-γ-cyclo­dextrin(1−)-[aqua­lithium]-μ-γ-cyclo­dextrin(1−)] pentadecahydrate], {[Li2(C48H79O40)2(H2O)3]·15H2O}n, consists of deprotonated γ-cyclo­dextrin (CD) mol­ecules assembled by lithium ions into metal–organic ribbons that are cross-linked by multiple O—H⋯O hydrogen bonds into sheets extending parallel to (0overline11). Within a ribbon, one Li+ ion is coordinated by one deprotonated hydroxyl group of the first γ-CD torus and by one hydroxyl group of the second γ-CD torus as well as by two water mol­ecules. The other Li+ ion is coordinated by one deprotonated hydroxyl and by one hydroxyl group of the second γ-CD torus, by one hydroxyl group of the first γ-CD torus as well as by one water mol­ecule. The coordination spheres of both Li+ cations are distorted tetra­hedral. The packing of the structure constitute channels along the a axis. Parts of the hy­droxy­methyl groups in cyclo­dextrin molecules as well as water mol­ecules show two-component disorder. Electron density associated with additional disordered solvent mol­ecules inside the cavities was removed with the SQUEEZE [Spek (2015). Acta Cryst. C71, 9–18] routine in PLATON. These solvent mol­ecules are not considered in the given chemical formula and other crystal data. Five out of the sixteen hy­droxy­methyl groups and one water mol­ecule are disordered over two sets of sites.




dimension

Syntheses and crystal structures of the one-dimensional coordination polymers formed by [Ni(cyclam)]2+ cations and 1,3-bis­(3-carb­oxy­prop­yl)tetra­methyl­disiloxane anions in different degrees of deprotonation

The asymmetric units of the title compounds, namely, catena-poly[[(1,4,8,11-tetra­aza­cyclo­tetra­decane-κ4N1,N4,N8,N11)nickel(II)]-μ-1,3-bis­(3-carboxyl­ato­prop­yl)tetra­methyl­disiloxane-κ2O:O'], [Ni(C10H24O5Si2)(C12H24N4)]n (I), and catena-poly[[[(1,4,8,11-tetra­aza­cyclo­tetra­decane-κ4N1,N4,N8,N11)nickel(II)]-μ-4-({[(3-carb­oxy­prop­yl)di­methyl­sil­yl]­oxy}di­methyl­sil­yl)butano­ato-κ2O:O'] per­chlorate], {[Ni(C10H25O5Si2)(C12H24N4)]ClO4}n (II), consist of one (in I) or two crystallographically non-equivalent (in II) centrosymmetric macrocyclic cations and one centrosymmetric dianion (in I) or two centrosymmetric monoanions (in II). In each compound, the metal ion is coordinated by the four secondary N atoms of the macrocyclic ligand, which adopts the most energetically stable trans-III conformation, and the mutually trans O atoms of the carboxyl­ate in a slightly tetra­gonally distorted trans-NiN4O2 octa­hedral coordination geometry. The crystals of both types of compounds are composed of parallel polymeric chains of the macrocyclic cations linked by the anions of the acid running along the [101] and [110] directions in I and II, respectively. In I, each polymeric chain is linked to four neighbouring ones by hydrogen bonding between the NH groups of the macrocycle and the carboxyl­ate O atoms, thus forming a three-dimensional supra­molecular network. In II, each polymeric chain contacts with only two neighbours, forming hydrogen bonds between the partially protonated carb­oxy­lic groups of the bridging ligand. As a result, a lamellar structure is formed with the layers oriented parallel to the (1overline{1}1) plane.




dimension

The first coordination compound of 6-fluoro­nicotinate: the crystal structure of a one-dimensional nickel(II) coordination polymer containing the mixed ligands 6-fluoro­nicotinate and 4,4'-bi­pyridine

A one-dimensional nickel(II) coordination polymer with the mixed ligands 6-fluoro­nicotinate (6-Fnic) and 4,4'-bi­pyridine (4,4'-bpy), namely, catena-poly[[di­aqua­bis­(6-fluoro­pyridine-3-carboxyl­ato-κO)nickel(II)]-μ-4,4'-bi­pyri­dine-κ2N:N'] trihydrate], {[Ni(6-Fnic)2(4,4'-bpy)(H2O)2]·3H2O}n, (1), was prepared by the reaction of nickel(II) sulfate hepta­hydrate, 6-fluoro­nicotinic acid (C6H4FNO2) and 4,4'-bi­pyridine (C10H8N2) in a mixture of water and ethanol. The nickel(II) ion in 1 is octa­hedrally coordinated by the O atoms of two water mol­ecules, two O atoms from O-monodentate 6-fluoro­nicotinate ligands and two N atoms from bridging 4,4'-bi­pyridine ligands, forming a trans isomer. The bridging 4,4'-bi­pyridine ligands connect symmetry-related nickel(II) ions into infinite one-dimensional polymeric chains running in the [1overline{1}0] direction. In the extended structure of 1, the polymeric chains and lattice water mol­ecules are connected into a three-dimensional hydrogen-bonded network via strong O—H⋯O and O—H⋯N hydrogen bonds, leading to the formation of distinct hydrogen-bond ring motifs: octa­meric R88(24) and hexa­meric R86(16) loops.