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Three-dimensional porous rhodium–copper alloy nanoflowers stereoassembled on Ti3C2Tx MXene as highly-efficient methanol oxidation electrocatalysts

Inorg. Chem. Front., 2024, Advance Article
DOI: 10.1039/D4QI02182G, Research Article
Haiyan He, Yue Lan, Jinlong Qin, Quanguo Jiang, Lu Yang, Jian Zhang, Huajie Huang
An in situ soft-chemistry approach is adopted for fabricating 3D porous rhodium–copper alloy nanoflowers stereoassembled on ultrathin Ti3C2Tx lamellas, which are able to serve as highly-efficient electrocatalysts toward alkaline methanol oxidation.
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A highly active and durable NiMoCuCo catalyst with moderated hydroxide adsorption energy for efficient hydrogen evolution reaction

Inorg. Chem. Front., 2024, Advance Article
DOI: 10.1039/D4QI01947D, Research Article
Hyeonggeun Choi, Seunghwan Jo, Ki Hoon Shin, HeeYoung Lim, Liting Zhang, Keon Beom Lee, Young-Woo Lee, Jung Inn Sohn
A charge valence state and surface-electronegativity-modulated NiMoCuCo composite is proposed as an active and durable alkaline hydrogen evolution reaction electrocatalyst with moderated hydroxide adsorption energy.
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Toward highly efficient TADF-active Cu(I), Ag(I) and Au(I) carbene complexes using symmetry-based design strategy

Inorg. Chem. Front., 2024, Advance Article
DOI: 10.1039/D4QI01996B, Research Article
Alexander V. Artem'ev, Maxim I. Rogovoy, Ilia M. Odud, Maria P. Davydova, Marianna I. Rakhmanova, Pavel A. Petrov, Valery K. Brel, Oleg I. Artushin, Konstantin A. Brylev, Denis G. Samsonenko, Alexey S. Berezin, Dmitry E. Gorbunov, Nina P. Gritsan
Tetraphosphine-carbene Cu(I), Ag(I) and Au(I) complexes, synthesized via a symmetry-based design strategy, exhibit cyan to yellow TADF with excellent quantum yields (58–89%) and reduced lifetimes.
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High-efficiency tunable self-trapped exciton emission in one-dimensional β-Cs3Cu2Br5via Ag alloying for optoelectronic applications

Inorg. Chem. Front., 2024, 11,7793-7802
DOI: 10.1039/D4QI00970C, Research Article
Xin Xu, Zhongyi Wang, Qingkun Kong, Siping Liu, Ruiling Zhang, Xiaojing Liu, Keli Han
Metastable 1D β-Cs3Cu2Br5 synthesized by rapid cooling could be stabilized by Ag+. Ag-alloyed samples exhibit tunable emission from blue-greenish to yellow, which is attributed to different degrees of lattice distortion regulated by Ag+.
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Exchange of equatorial ligands in protein-bound paddlewheel Ru25+ complexes: new insights from X-ray crystallography and quantum chemistry

Inorg. Chem. Front., 2024, 11,7803-7811
DOI: 10.1039/D4QI01846J, Research Article
Open Access
Aarón Terán, Francesca Fasulo, Giarita Ferraro, Ana Edilia Sánchez-Peláez, Santiago Herrero, Michele Pavone, Ana Belén Muñoz-García, Antonello Merlino
The reactivity of [Ru2Cl(D-p-CNPhF)(O2CCH3)3]n (D-p-CNPhF = N,N'-bis(4-cyanophenyl)formamidinate) with the model protein RNase A has been investigated by X-ray crystallography and Quantum Chemistry.
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Scalable complete conversion of MgCo2O4 by mechanochemistry for high-performance supercapacitors

Inorg. Chem. Front., 2024, 11,7886-7897
DOI: 10.1039/D4QI02020K, Research Article
Zhiyuan Liu, Qixuan Xiang, Hao Zhang, Xianglong Zhang, Huijun Tan, Yaping Zhao
Complete conversion of MgCo2O4 with excellent electrochemical performance has been successfully achieved.
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Realizing efficient broadband near-infrared emission under blue light excitation in Sb3+-doped zero-dimensional organic tin(IV)-based metal halides via coordination structure modulation

Inorg. Chem. Front., 2024, 11,7979-7990
DOI: 10.1039/D4QI01904K, Research Article
Bao Ke, Hui Peng, Yongqi Yang, Chengzhi Yang, Shangfei Yao, Arfan Bukhtiar, Qilin Wei, Jialong Zhao, Bingsuo Zou
Here, we report a new NIR emitter of Sb3+-doped tin(IV)-based metal halides via coordination structure modulation, which can exhibit bright broadband NIR emission under blue light excitation with a PLQY of 33.2%.
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A high-entropy FeCoMnCuNi diselenide self-standing electrode with outstanding water-electrolysis performance in alkaline medium

Inorg. Chem. Front., 2024, 11,7936-7946
DOI: 10.1039/D4QI01835D, Research Article
Xinxin Guo, Mengmeng Zhou, Ziwu Liu, Shiheng Mu, Kaijia Wang, Huanqiang Shi, Fang Wang, Shijian Lu, Zhonghai Ni, Guiqing Liu
A self-standing high-entropy FeCoMnCuNiSe2 electrode exhibited superior HER activity and OWS performance due to high entropy, lattice distortion and tip-enhancement effects.
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Governing efficiency and thermoresponsivity of luminescence in dirhenium(V) molecules by a highly tunable emission mechanism

Inorg. Chem. Front., 2024, 11,8047-8069
DOI: 10.1039/D4QI01943A, Research Article
Michal Liberka, Mikolaj Zychowicz, Laurine Vasseur, James Hooper, Szymon Chorazy
Modification of an organic linker bonding two cyanido-nitrido Re(V) complexes enables the tuning of the emission mechanism that non-trivially modulates the photoluminescence and its applicability for temperature sensing.
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Pyridyl–triazole ligands enable in situ generation of a highly active dihydride iridium(III) complex for formic acid dehydrogenation

Inorg. Chem. Front., 2024, 11,7921-7929
DOI: 10.1039/D4QI01818D, Research Article
Miriam Abán, J. Marco Cuenca, Irene Embid, Alba de Toro, Pilar Gómez-Sal, Ernesto de Jesús, Marta Valencia, Cristina G. Yebra
[CpIr(CO)H2] efficiently catalyses formic acid dehydrogenation, forming in situ from pyridyl-triazole pre-catalysts [Cp*Ir(k2-NN)(Cl)][OTf]. Neat formic acid is dehydrogenated with a TON of up to 26876 and a TOF exceeding 10700 h−1.
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Highly defective and conductive Cu-doped 1T/2H-MoS2 nanosheets as high-capacity cathode materials for enhanced magnesium-ion storage

Inorg. Chem. Front., 2024, 11,7831-7842
DOI: 10.1039/D4QI02064B, Research Article
Ao Xu, Yan Liu, Jiahui Wang, Yijing Wang, Fuyi Jiang, Yanli Zhou
Limited by the poor electronic conductivity and strong interaction between Mg2+ and MoS2, the 2H phase of MoS2 as a cathode material exhibits low capacity and poor rate capability.
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Towards ultra-sensitive multimodal luminescent thermometers enabled by high crystal field strength of Lu2CaMg2Ge3O12:Yb3+,Nd3+,Er3+ phosphors

Inorg. Chem. Front., 2024, 11,7955-7965
DOI: 10.1039/D4QI01767F, Research Article
Zhijiao Zhao, Mengmeng Dai, Kejie Li, Guiying Liang, Yanling Wei, Zuoling Fu
An effective full-spectrum thermometer covering from the visible to NIR-II band was designed based on garnet Lu2CaMg2Ge3O12:Yb3+,Er3+/Nd3+ phosphors; meanwhile, Er3+ (4I13/2) split into four Stark sublevels due to high crystal field strength.
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Shooting short-wavelength nonlinear optical materials with targeted balance performances in hydroxyborates through first-principles high-throughput screening

Inorg. Chem. Front., 2024, 11,7843-7852
DOI: 10.1039/D4QI02234C, Research Article
Chenxu Li, Abudukadi Tudi, Huanhuan Cheng, Qingyu Liu, Zhihua Yang, Shilie Pan
High-throughput screening of 222 hydroxyborates identified three as promising short-wavelength ultraviolet nonlinear optical. with phase-matching second harmonic generation capacity extending to the solar blind region (200–280 nm).
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A non-equivalent Ni doped La-MOF for enhanced photocatalytic CO2 reduction through oxygen vacancy regulation and electronic structure optimization

Inorg. Chem. Front., 2024, Advance Article
DOI: 10.1039/D4QI02143F, Research Article
Tongzheng Zhang, Zhaohui Huang, Guanshun Xie, Le Liao, Changqiang Yu, Xiuqiang Xie, Nan Zhang
La/Ni-MOF with oxygen vacancies and regulated electronic structures is prepared and exhibits enhanced visible-light photocatalytic activity for CO2-to-CO conversion.
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Li3V2(PO4)3 particles embedded in N and S Co-doped porous carbon cathode for high performance lithium storage:An experimental and DFT study

Inorg. Chem. Front., 2024, Accepted Manuscript
DOI: 10.1039/D4QI01916D, Research Article
Jinggao Wu, Canyu Zhong, Xiaofan Chen, Jing Huang
Li3V2(PO4)3 (LVP)-coated with N and S co-doped carbon (NSC) is investigated by DFT calculation, suggesting that NSC significantly enhances electronic conductivity and lowers Li+ migration energy barrier in comparison to...
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The use of single metal atoms-based photocatalysts for the production of ammonia through photocatalytic nitrogen fixation

Inorg. Chem. Front., 2024, Accepted Manuscript
DOI: 10.1039/D4QI02449D, Review Article
Ping Zhang, Yongchong Yu, Reyila Tuerhong, Xinyu Du, Keyi Chai, Xiaoping Su, Qiong Su, Shujuan Meng, Lijuan Han
The conventional synthetic ammonia industry is characterized by its high energy consumption, necessitating the exploration of a new environmentally sustainable method for NH3 synthesis. A prospective alternative to the Haber-Bosch...
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AMF-SporeChip provides new insights into arbuscular mycorrhizal fungal asymbiotic hyphal growth dynamics at the cellular level

Lab Chip, 2024, 24,1930-1946
DOI: 10.1039/D3LC00859B, Paper
Open Access
  This article is licensed under a Creative Commons Attribution 3.0 Unported Licence.
Felix Richter, Maryline Calonne-Salmon, Marcel G. A. van der Heijden, Stéphane Declerck, Claire E. Stanley
A new microfluidic platform – the AMF-SporeChip – enables immobilisation of arbuscular mycorrhizal fungal spores and confrontation of asymbiotic hyphae with physical obstacles, allowing the identification of various exploration strategies.
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Deciphering fibroblast-induced drug resistance in non-small cell lung carcinoma through patient-derived organoids in agarose microwells

Lab Chip, 2024, 24,2025-2038
DOI: 10.1039/D3LC01044A, Paper
Qiyue Luan, Ines Pulido, Angelique Isagirre, Julian Carretero, Jian Zhou, Takeshi Shimamura, Ian Papautsky
Agarose microwell platform for modeling lung carcinoma using patient-derived tissues to decipher cancer associated fibroblast-induced drug resistance.
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Droplet microfluidic system for high throughput and passive selection of bacteria producing biosurfactants

Lab Chip, 2024, 24,1947-1956
DOI: 10.1039/D3LC00656E, Paper
Open Access
Klaudia Staskiewicz, Maria Dabrowska-Zawada, Lukasz Kozon, Zofia Olszewska, Lukasz Drewniak, Tomasz S. Kaminski
Novel microfluidic technique for functional selection of biosurfactant-producing microorganisms. Single bacterial cells are encapsulated into picoliter droplets for clonal cultivation and passively sorted at high throughput by interfacial tension.
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A self-assembly and cellular migration based fabrication of high-density 3D tubular constructs of barrier forming membranes

Lab Chip, 2024, Advance Article
DOI: 10.1039/D4LC00006D, Paper
Seyedaydin Jalali, Ponnambalam Ravi Selvaganapathy
A scalable method for creating perfusable 3D tissue constructs using self-assembly is introduced. Unlike conventional cell injection methods, here we leverage cell migration to form tissue barriers of low permeability, mimicking in vivo environments.
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High-throughput viscoelastic characterization of cells in hyperbolic microchannels

Lab Chip, 2024, Advance Article
DOI: 10.1039/D3LC01061A, Paper
Open Access
  This article is licensed under a Creative Commons Attribution 3.0 Unported Licence.
Felix Reichel, Ruchi Goswami, Salvatore Girardo, Jochen Guck
We use hyperbolic microchannels to create a flow field with linearly increasing velocity, leading to a constant tensile stress to probe the viscoelastic properties of cells. We verify our approach on oil droplets and polyacrylamide beads.
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Screening for Urothelial Carcinoma Cells in Urine Based on Digital Holographic Flow Cytometry through Machine Learning and Deep Learning Method

Lab Chip, 2024, Accepted Manuscript
DOI: 10.1039/D3LC00854A, Paper
Lu Xin, Xi Xiao, Wen Xiao, Ran Peng, Hao Wang, Feng Pan
The incidence of urothelial carcinoma continue to rise annually, particularly among the elderly. Prompt diagnosis and treatment can significantly enhance patient survival and quality of life. Urine cytology remains a...
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Dielectrophoretic characterization and selection of non-spherical flagellate algae in parallel channels with right-angle bipolar electrodes

Lab Chip, 2024, Advance Article
DOI: 10.1039/D4LC00165F, Paper
Xiaoming Chen, Shun Liu, Mo Shen, Jishun Shi, Chungang Wu, Zhipeng Song, Yong Zhao
We develop a microfluidic device with closed right-angle bipolar electrodes to realize dielectrophoretic characterization and selection of non-spherical flagellate algae.
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Polar coordinate active-matrix digital microfluidics for high-resolution concentration gradient generation

Lab Chip, 2024, 24,2193-2201
DOI: 10.1039/D3LC00979C, Paper
Bingbing Zhang, Jinxin Fu, Maohua Du, Kai Jin, Qi Huang, Jiahao Li, Dongping Wang, Siyi Hu, Jinhua Li, Hanbin Ma
Advancing active-matrix digital microfluidics through polar coordinates for precise concentration gradients. Demonstrated with chip photography, concentration gradient solution demo, and efficiency comparison.
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High-throughput 3D microfluidic chip for generation of concentration gradients and mixture combinations

Lab Chip, 2024, 24,2280-2286
DOI: 10.1039/D3LC00822C, Paper
Mingwei Zhao, Jing Yang, Zhenqing Li, Yuan Zeng, Chunxian Tao, Bo Dai, Dawei Zhang, Yoshinori Yamaguchi
Concentration gradient generation and mixed combinations of multiple solutions are of great value in the field of biomedical research.
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Opto-combinatorial indexing enables high-content transcriptomics by linking cell images and transcriptomes

Lab Chip, 2024, 24,2287-2297
DOI: 10.1039/D3LC00866E, Paper
Arata Tsuchida, Taikopaul Kaneko, Kaori Nishikawa, Mayu Kawasaki, Ryuji Yokokawa, Hirofumi Shintaku
We introduce a simple integrated analysis method that links cellular phenotypic behaviour with single-cell RNA sequencing by utilizing a combination of optical indices from cells and hydrogel beads.
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Integrated high performance microfluidic organic analysis instrument for planetary and space exploration

Lab Chip, 2024, Advance Article
DOI: 10.1039/D4LC00012A, Paper
Anna L. Butterworth, Matin Golozar, Zachary Estlack, Jeremy McCauley, Richard A. Mathies, Jungkyu Kim
This work presents the design, fabrication, and automation of our space flight-format microfabricated sample processing and capillary electrophoresis analysis instrument.
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Advanced sequencing-based high-throughput and long-read single-cell transcriptome analysis

Lab Chip, 2024, Accepted Manuscript
DOI: 10.1039/D4LC00105B, Critical Review
Shanqing Huang, Weixiong Shi, Shiyu Li, Qian Fan, Chaoyong Yang, Jiao Cao, Lingling Wu
Cells are the fundamental building blocks of living systems, exhibiting significant heterogeneity. The transcriptome connects the cellular genotype and phenotype, and profiling single-cell transcriptome is critical for uncovering distinct cell...
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High-resolution low-cost LCD 3D printing for microfluidic and organ-on-a-chip devices

Lab Chip, 2024, Accepted Manuscript
DOI: 10.1039/D3LC01125A, Paper
Open Access
Houda Shafique, Vahid Karamzadeh, Geunyong Kim, Molly L. Shen, Yonatan Morocz, Ahmad Sohrabi Kashani, David Juncker
The fabrication of microfluidic devices has progressed from cleanroom manufacturing to replica molding in polymers, and more recently to direct manufacturing by subtractive (e.g., laser machining) and additive (e.g., 3D...
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Versatile hybrid technique for passive straight micromixer manufacturing by combining pulsed laser ablation, stereolithographic 3D printing and computational fluid dynamics

Lab Chip, 2024, Advance Article
DOI: 10.1039/D4LC00009A, Paper
Open Access
Bastián Carnero, Yago Radziunas-Salinas, Bruno K. Rodiño-Janeiro, Sylvana Varela Ballesta, M. Teresa Flores-Arias
The proposed hybrid technique for passive straight micromixer manufacturing by combining pulsed laser ablation and stereolithographic 3D printing.
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ChemPren: a new and economical technology for conversion of waste plastics to light olefins

React. Chem. Eng., 2024, Advance Article
DOI: 10.1039/D4RE00354C, Perspective
Anne Gaffney, Debtanu Maiti, Debasish Kuila, Gennaro Mafia
With the ever-increasing demand for plastics, sustainable recycling methods is a key necessity.
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Development and Simulation of Annular Flow Photoreactors: Integration of Light-Diffusing Fibers as optical diffusers with Laser Diodes

React. Chem. Eng., 2024, Accepted Manuscript
DOI: 10.1039/D4RE00400K, Paper
Open Access
  This article is licensed under a Creative Commons Attribution 3.0 Unported Licence.
Sergio Carrillo De Hert, Rafael Lopez-Rodriguez, Michael Di Maso, Jonathan McMullen, Steven Ferguson
Continuous flow chemical photoreactors have emerged as a highly attractive platform, garnering considerable attention in both industry and academia. Utilizing thin channels, these reactors offer a promising solution for achieving...
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Bayesian-optimization-based design of highly active and stable Fe–Cu/SSZ-13 catalysts for the selective catalytic reduction of NOx with NH3

React. Chem. Eng., 2024, 9,3029-3037
DOI: 10.1039/D4RE00327F, Paper
Sanha Lim, Hwangho Lee, Hyun Sub Kim, Jun Seop Shin, Jong Min Lee, Do Heui Kim
Bayesian optimization approach facilitates an efficient optimization of multi-components catalyst for NH3-SCR reaction.
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Fabrication of black TiO2 through microwave heating for visible light-driven photocatalytic degradation of rhodamine 6G

React. Chem. Eng., 2024, 9,3003-3015
DOI: 10.1039/D4RE00202D, Paper
Riska Rachmantyo, Afif Akmal Afkauni, Ricky Reinaldo, Lei Zhang, Arramel Arramel, Muhammad Danang Birowosuto, Arie Wibowo, Hermawan Judawisastra
This study shows that a narrower band gap TiO2, namely black TiO2, can be prepared using NaBH4 as a reducing material and microwave heating, which is a faster, greener, and simpler method than the existing method using furnace heating.
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A novel ultra-high vacuum diffusion setup to study Knudsen diffusion

React. Chem. Eng., 2024, 9,3047-3059
DOI: 10.1039/D4RE00267A, Paper
Open Access
  This article is licensed under a Creative Commons Attribution 3.0 Unported Licence.
Maria Mourkou, Haiyue Yu, Sander Baltussen, Nicholas Snead, Nidhi Kapil, Marc-Olivier Coppens
An ultra-high vacuum setup was conceived to study Knudsen diffusion in channels with varied geometrical characteristics that can be modified using 3D printing. This new experimental methodology aids to gain insight into diffusion in nanoporous media.
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Immobilization of cationic dye on photoluminescent hydroxyapatite particles through a citric acid bonding layer

React. Chem. Eng., 2024, 9,2863-2867
DOI: 10.1039/D4RE00277F, Communication
Daichi Noda, Wanyu Shi, Aiga Yamada, Zizhen Liu, Motohiro Tagaya
Promotion of the immobilization of cationic porphyrin on Eu(III) ion-doped hydroxyapatite nanoparticles through citric acid as the bonding layer was achieved.
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Kinetic insights into structure sensitivity of Ru catalyzed L-alanine hydrogenation to alaninol

React. Chem. Eng., 2024, Advance Article
DOI: 10.1039/D4RE00420E, Paper
Rui Song, Chang Yao, Wenhua Li, Nihong An, Yafeng Shen, Nina Fei, Xiaohu Ge, Yueqiang Cao, Xuezhi Duan, Xinggui Zhou
Ru(101) sites are identified as the dominant active sites for the hydrogenation of L-alanine to alaninol.
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CO2 hydrogenation to light olefins over Fe–Co/K–Al2O3 catalysts prepared via microwave calcination

React. Chem. Eng., 2024, Advance Article
DOI: 10.1039/D4RE00428K, Paper
Nutkamaithorn Polsomboon, Thanapha Numpilai, Kulpavee Jitapunkul, Kajornsak Faungnawakij, Metta Chareonpanich, Xingda An, Le He, Günther Rupprechter, Thongthai Witoon
Microwave calcination optimizes the Fe–C/Fe3O4 ratio to 0.34, enhancing CO2 conversion and light olefin yield.
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Sugar additive with a halogen group enabling a highly reversible and dendrite-free Zn anode

React. Chem. Eng., 2024, Advance Article
DOI: 10.1039/D4RE00366G, Paper
Weihao Xu, Xipo Ma, Pengbo Lyu, Zhenren Gao, Chunshuang Yan, Chade Lv
Sucralose, a weakly polar sugar electrolyte additive containing halogen elements, enables a highly reversible and dendrite-free Zn anode.
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Ammonia Decomposition over Low-loading Ruthenium Catalyst Achieved through “Adiabatic” Plasma Reactor

React. Chem. Eng., 2024, Accepted Manuscript
DOI: 10.1039/D4RE00509K, Paper
Minhazur Rahman Shawon, Chinwendu Umeojiakor, Anthony Griffin, Jeffrey S. Aguinaga, Jiachun Wu, Derek Patton, Zhe Qiang, Hossein Toghiani, Yizhi Xiang
Electrified catalytic processes for ammonia (NH3) decomposition have been considered as essential technologies for distributed COx-free hydrogen production. Here we show that efficient NH3 decomposition can be achieved over low-loading...
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Analysis of the adhesive secreting cells of Arion subfuscus: insights into the role of microgels in a tough, fast-setting hydrogel glue

Soft Matter, 2024, Advance Article
DOI: 10.1039/D4SM00071D, Paper
Andrew M. Smith, Patrick Flammang
A model for the rapid setting of a gastropod hydrogel adhesive. Cross-linked microgels mix with microscopic packets of polysaccharides; these flow onto surfaces until the packets rupture, joining the microgels together.
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Shear zones in granular mixtures of hard and soft particles with high and low friction

Soft Matter, 2024, 20,3118-3130
DOI: 10.1039/D4SM00100A, Paper
Open Access
  This article is licensed under a Creative Commons Attribution 3.0 Unported Licence.
Aditya Pratap Singh, Vasileios Angelidakis, Thorsten Pöschel, Sudeshna Roy
Granular materials show inhomogeneous flows characterized by strain localization.
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A Passive Star Polymer in a Dense Active Bath: Insights from Computer Simulations

Soft Matter, 2024, Accepted Manuscript
DOI: 10.1039/D4SM00144C, Paper
Ramanand Singh Yadav, Sanaa Sharma, Ralf Metzler, Rajarshi Chakrabarti
Using computer simulations in two dimensions (2D), we explore the structure and dynamics of a star polymer with three arms made of passive monomers immersed in a bath of active...
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Multiple physical crosslinked highly adhesive and conductive hydrogels for human motion and electrophysiological signal monitoring

Soft Matter, 2024, Advance Article
DOI: 10.1039/D4SM00195H, Paper
Qirui Wu, Anbang Chen, Yidan Xu, Songjiu Han, Jiayu Zhang, Yujia Chen, Jianren Hang, Xiaoxiang Yang, Lunhui Guan
Ionic conducting hydrogel (ICHgel) was synthesized by doping fumed SiO2, which exhibited superior stretchability, conductivity, and adhesiveness, making it a promising bridge for effective communication between electronic devices and human tissues.
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Achieving controllable and reversible snap-through in pre-strained strips of liquid crystalline elastomers

Soft Matter, 2024, 20,3256-3270
DOI: 10.1039/D4SM00037D, Paper
Open Access
James T. Waters, Anna C. Balazs
Deformable, elastic materials that buckle in response to external stimuli can display “snap-through”, which involves a transition between different, stable buckled states.
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Pure elongation flow of an electrorheological fluid: insights on wall slip from electrorheology

Soft Matter, 2024, 20,3313-3321
DOI: 10.1039/D3SM01448G, Paper
Ishu Chaudhary, Manish Kaushal
We study the pure elongation flow behavior of an electrorheological fluid as a model soft-jammed system, wherein the extent of jamming is controlled by an externally applied electric-field. Additionally, this study offers general insight into how jamming affects slip dynamics.
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Strong, tough and conductive single-network hydrogels based on deswelling and the salting-out effect

Soft Matter, 2024, Advance Article
DOI: 10.1039/D4SM00298A, Paper
Xingyue Sun, Haiyi Liang, Lina Ye
By comparing the mechanical properties between salt-treated hydrogels and air-dried hydrogels, the synergistic effect in energy transfer and dissipation arising from increases in polymer fraction and cross-linking plays an indispensable role in toughening SN hydrogels.
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A high-performance room-temperature NH3 gas sensor based on WO3/TiO2 nanocrystals decorated with Pt NPs

RSC Adv., 2024, 14,12225-12234
DOI: 10.1039/D4RA00881B, Paper
Open Access
Zhixuan Wu, Zhengai Chen, Zhixiang Deng, Ning Dai, Yan Sun, Meiying Ge
In this work, a high-performance room-temperature ammonia (NH3) gas sensor based on Pt-modified WO3–TiO2 nanocrystals was synthesized via a two-step hydrothermal.
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Electric-field modulated energy transfer in phosphorescent material- and fluorescent material-codoped polymer light-emitting diodes

RSC Adv., 2024, 14,12294-12302
DOI: 10.1039/D4RA00669K, Paper
Open Access
  This article is licensed under a Creative Commons Attribution 3.0 Unported Licence.
Ling-Chuan Meng, Yan-Bing Hou
In this study, we find electric-field modulated energy transfer in phosphorescent material- and fluorescent material-codoped polymer that has never been reported.
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A self-powered photodetector through facile processing using polyethyleneimine/carbon quantum dots for highly sensitive UVC detection

RSC Adv., 2024, 14,12360-12371
DOI: 10.1039/D3RA08538D, Paper
Open Access
Vo Pham Hoang Huy, Chung Wung Bark
Ultraviolet C (UVC) photodetectors have garnered considerable attention because the detection of UVC is critical for preventing skin damage in humans, monitoring environmental conditions, and detecting power aging in military applications.
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