keyword
https://read.qxmd.com/read/38687979/2d-mob-mbene-an-efficient-co-catalyst-for-photocatalytic-hydrogen-production-under-visible-light
#21
JOURNAL ARTICLE
Sen Jin, Zuhao Shi, Ruige Wang, Yitong Guo, Libo Wang, Qianku Hu, Kai Liu, Neng Li, Aiguo Zhou
Highly active and low-cost co-catalysts have a positive effect on the enhancement of solar H2 production. Here, we employ two-dimensional (2D) MBene as a noble-metal-free co-catalyst to boost semiconductor for photocatalytic H2 production. MoB MBene is a 2D nanoboride, which is directly made from MoAlB by a facile hydrothermal etching and manual scraping off process. The as-synthesized MoB MBene with purity >95 wt % is treated by ultrasonic cell pulverization to obtain ultrathin 2D MoB MBene nanosheets (∼0...
April 30, 2024: ACS Nano
https://read.qxmd.com/read/38687410/durable-ru-nanocrystal-with-hfo-2-modification-for-acidic-overall-water-splitting
#22
JOURNAL ARTICLE
Xiangkai Kong, Jie Xu, Zhicheng Ju, Changle Chen
Durable and efficient bi-functional catalyst, that is capable of both oxygen evolution reaction and hydrogen evolution reaction under acidic condition, are highly desired for the commercialization of proton exchange membrane water electrolysis. Herein, we report a robust L-Ru/HfO2 heterostructure constructed via confining crystalline Ru nanodomains by HfO2 matrix. When assembled with a proton exchange membrane, the bi-functional L-Ru/HfO2 catalyst-based electrolyzer presents a voltage of 1.57 and 1.67 V to reach 100 and 300 mA cm-2 current density, prevailing most of previously reported Ru-based materials as well as commercial Pt/C||RuO2 electrolyzer...
April 30, 2024: Nano-Micro Letters
https://read.qxmd.com/read/38682925/enhancing-surface-strain-of-intermetallic-fuel-cell-catalysts-by-composition-induced-phase-transition
#23
JOURNAL ARTICLE
Ru-Yang Shao, Xiangfu Niu, Xiao-Chu Xu, Zhen-Hua Zhou, Shengqi Chu, Lei Tong, Liang Zhang, Hai-Wei Liang
The lattice parameter of platinum-based intermetallic compounds (IMCs), which correlates with the intrinsic activity of the oxygen reduction reaction (ORR), can be modulated by crystal phase engineering. However, the controlled preparation of IMCs with unconventional crystal structures remains highly challenging. Here, we demonstrate the synthesis of carbon-supported PtCu-based IMC catalysts with an unconventional L10 structure by a composition-regulated strategy. Experiment and machine learning reveal that the thermodynamically favorable structure changes from L11 to L10 when slight Cu atoms are substituted with Co...
April 29, 2024: Nano Letters
https://read.qxmd.com/read/38682249/coupling-nano-and-atomic-electric-field-confinement-for-robust-alkaline-oxygen-evolution
#24
JOURNAL ARTICLE
Qiyou Wang, Yujie Gong, Xin Zi, Lei Gan, Evangelina Pensa, Yuxiang Liu, Yusen Xiao, Hongmei Li, Kang Liu, Junwei Fu, Jun Liu, Andrei Stefancu, Chao Cai, Shanyong Chen, Shiguo Zhang, Ying-Rui Lu, Ting-Shan Chan, Chao Ma, Xueying Cao, Emiliano Cortes, Min Liu
The alkaline oxygen evolution reaction (OER) is a promising avenue for producing clean fuels and storing intermittent energy. However, challenges such as excessive OH- consumption and strong adsorption of oxygen-containing intermediates hinder the development of alkaline OER. In this study, we propose a cooperative strategy by leveraging both nano-scale and atomically local electric fields for alkaline OER, demonstrated through the synthesis of Mn single atom doped CoP nanoneedles (Mn SA-CoP NNs). Finite element method simulations and density functional theory calculations predict that the nano-scale local electric field enriches OH- around the catalyst surface, while the atomically local electric field improves *O desorption...
April 29, 2024: Angewandte Chemie
https://read.qxmd.com/read/38678510/interfaces-engineering-of-ultrafine-ni-ni-2-p-c-core-shell-heterostructure-for-high-yield-hydrogen-peroxide-electrosynthesis
#25
JOURNAL ARTICLE
Yilei He, Yanze Wei, Ruiyi Huang, Tian Xia, Ji Wang, Zijian Yu, Zumin Wang, Ranbo Yu
Developing cost-effective and sustainable catalysts with exceptional activity and selectivity is essential for the practical implementation of on-site H2 O2 electrosynthesis, yet it remains a formidable challenge. Metal phosphide core-shell heterostructures anchored in carbon nanosheets (denoted as Ni@Ni2 P/C NSs) are designed and synthesized via carbonization and phosphidation of the 2D Ni-BDC precursor. This core-shell nanostructure provides more accessible active sites and enhanced durability, while the 2D carbon nanosheet substrate prevents heterostructure aggregation and facilitates mass transfer...
April 28, 2024: Small Methods
https://read.qxmd.com/read/38677671/photocatalytic-degradation-of-acid-red-18-by-synthesized-agcofe-2-o-4-ch-ac-recyclable-environmentally-friendly-chemically-stable-and-cost-effective-magnetic-nano-hybrid-catalyst
#26
JOURNAL ARTICLE
Majid Amiri Gharaghani, Abbas Dehdarirad, Hakimeh Mahdizadeh, Hassan Hashemi, Alireza Nasiri, Mohammad Reza Samaei, Amin Mohammadpour
Chitosan (Ch) is a linear biodegradable natural carbohydrate polymer and the most appealing biopolymer, such as low-cost biodegradability, biocompatibility, hydrophilicity, and non-toxicity. In this case, Ch was utilized to synthesize AgCoFe2 O4 @Chitosan (Ch)/Activated Carbon (AC) by the modified microwave-assisted co-precipitation method. The physical and chemical structure of magnetic nanocomposites was analyzed and characterized by Field Emission Scanning Electron Microscope (FESEM), Transmission electron microscopy (TEM), X-ray diffraction (XRD), Energy Dispersive Spectroscopy (EDS), Diffuse Reflection Spectroscopy (DRS), Value stream mapping (VSM), Fourier transform spectroscopy (FTIR) and BET...
April 25, 2024: International Journal of Biological Macromolecules
https://read.qxmd.com/read/38670501/continuous-operation-of-nano-catalytic-ozonation-using-membrane-separation-coupling-system-influence-factors-and-mechanism
#27
JOURNAL ARTICLE
Qiong Yang, Jianjian Wei, Yili Chen, Zhourui Xu, Dehua Ma, Min Zheng, Jiansheng Li
The application of nano-catalysts in improving the ozonation removal efficiency for refractory organic compounds has been extensively investigated. However, cost-effective nano-catalysts separation remains a challenge. In this study, membrane separation processes were employed to separate nano-MgO catalysts from an ozonation system. A continuous nano-catalytic ozonation membrane separation (nCOMS) coupling system was successfully constructed for treating quinoline. The results showed that long hydraulic retention time (HRT) and high nano-MgO dosage could improve the quinolone removal efficiency but shorten operation cycles...
April 24, 2024: Chemosphere
https://read.qxmd.com/read/38669279/nanostructure-engineering-of-cathode-layers-in-proton-exchange-membrane-fuel-cells-from-catalysts-to-membrane-electrode-assembly
#28
REVIEW
Bolong Yang, Zhonghua Xiang
The membrane electrode assembly (MEA) is the core component of proton exchange membrane fuel cells (PEMFCs), which is the place where the reaction occurrence, the multiphase material transfer and the energy conversion, and the development of MEA with high activity and long stability are crucial for the practical application of PEMFCs. Currently, efforts are devoted to developing the regulation of MEA nanostructure engineering, which is believed to have advantages in improving catalyst utilization, maximizing three-phase boundaries, enhancing mass transport, and improving operational stability...
April 26, 2024: ACS Nano
https://read.qxmd.com/read/38668167/a-high-performance-and-durable-direct-ammonia-symmetrical-solid-oxide-fuel-cell-with-nano-la-0-6-sr-0-4-fe-0-7-ni-0-2-mo-0-1-o-3-%C3%AE-decorated-doped-ceria-electrode
#29
JOURNAL ARTICLE
Hao Jiang, Zhixian Liang, Hao Qiu, Yongning Yi, Shanshan Jiang, Jiahuan Xu, Wei Wang, Chao Su, Tao Yang
Solid oxide fuel cells (SOFCs) offer a significant advantage over other fuel cells in terms of flexibility in the choice of fuel. Ammonia stands out as an excellent fuel choice for SOFCs due to its easy transportation and storage, carbon-free nature and mature synthesis technology. For direct-ammonia SOFCs (DA-SOFCs), the development of anode catalysts that have efficient catalytic activity for both NH3 decomposition and H2 oxidation reactions is of great significance. Herein, we develop a Mo-doped La0.6 Sr0...
April 12, 2024: Nanomaterials
https://read.qxmd.com/read/38665495/an-efficient-catalysis-for-the-synthesis-of-pyrimido-1-2-a-benzimidazoles-and-1-benzothiazolylamino-methyl-2-naphthols-using-zno-so-3-h-tropine
#30
JOURNAL ARTICLE
Fatemeh Rahimizadeh, Masoumeh Mazloumi, Farhad Shirini
In this research and in the line of our researches on the use of nano-substrates modified with ionic liquid in organic reactions, an efficient and green method for the one-pot three-component synthesis of pyrimido[1,2- a ]benzimidazole and 1-(benzothiazolylamino)methyl-2-naphthol derivatives is reported using a new nanoporous catalyst formulated as ZnO@SO3 H@Tropine. Further analysis of the catalyst for its characterization has been performed using thermal gravimetric analysis (TGA), field emission scanning electron microscopy (FESEM), X-ray diffraction (XRD), energy dispersive spectrometer (EDS) and Fourier-transform infrared spectroscopy (FT-IR)...
April 22, 2024: RSC Advances
https://read.qxmd.com/read/38662647/controllable-regulation-of-the-oxygen-redox-process-in-lithium-oxygen-batteries-by-high-configuration-entropy-spinel-with-an-asymmetric-octahedral-structure
#31
JOURNAL ARTICLE
Guilei Tian, Haoyang Xu, Xinxiang Wang, Xiaojuan Wen, Pengfei Liu, Sheng Liu, Ting Zeng, Fengxia Fan, Shuhan Wang, Chuan Wang, Chenrui Zeng, Chaozhu Shu
Designing bifunctional electrocatalysts to boost oxygen redox reactions is critical for high-performance lithium-oxygen batteries (LOBs). In this work, high-entropy spinel (Co0.2 Mn0.2 Ni0.2 Fe0.2 Cr0.2 )3 O4 (HEOS) is fabricated by modulating the internal configuration entropy of spinel and studied as the oxygen electrode catalyst in LOBs. Under the high-entropy atomic environment, the Co-O octahedron in spinel undergoes asymmetric deformation, and the reconfiguration of the electron structure around the Co sites leads to the upward shift of the d-orbital centers of the Co sites toward the Fermi level, which is conducive to the strong adsorption of redox intermediate LiO2 on the surface of the HEOS, ultimately forming a layer of a highly dispersed Li2 O2 thin film...
April 25, 2024: ACS Nano
https://read.qxmd.com/read/38662149/rational-design-of-cost-effective-metal-doped-zro-2-for-oxygen-evolution-reaction
#32
JOURNAL ARTICLE
Yuefeng Zhang, Tianyi Wang, Liang Mei, Ruijie Yang, Weiwei Guo, Hao Li, Zhiyuan Zeng
The design of cost-effective electrocatalysts is an open challenging for oxygen evolution reaction (OER) due to the "stable-or-active" dilemma. Zirconium dioxide (ZrO2 ), a versatile and low-cost material that can be stable under OER operating conditions, exhibits inherently poor OER activity from experimental observations. Herein, we doped a series of metal elements to regulate the ZrO2 catalytic activity in OER via spin-polarized density functional theory calculations with van der Waals interactions. Microkinetic modeling as a function of the OER activity descriptor (GO* -GHO* ) displays that 16 metal dopants enable to enhance OER activities over a thermodynamically stable ZrO2 surface, among which Fe and Rh (in the form of single-atom dopant) reach the volcano peak (i...
April 25, 2024: Nano-Micro Letters
https://read.qxmd.com/read/38661054/enzyme_metal-organic-framework-composites-as-novel-approach-for-microplastic-degradation
#33
JOURNAL ARTICLE
Irene Ricón, Tania Hidalgo, Giacomo Armani, Sara Rojas Macías, Patricia Horcajada
Plastic pollution is one of the main worldwide environmental concerns. Our lifestyle involves persistent plastic consumption, aggravating the low efficiency of wastewater treatment plants in its removal. Nano/microplastics are accumulated in living beings, pushing to identify new water remediation strategies to avoid their harmful effects. Enzymes (e.g., Candida rugosa-CrL) are known natural plastic degraders as catalysts in depolymerization reactions. However, their practical use is limited by their stability, recyclability, and economical concerns...
April 25, 2024: ChemSusChem
https://read.qxmd.com/read/38660523/retraction-high-performance-sono-nano-catalytic-system-ctsn-fe-3-o-4-cu-nanocomposite-a-promising-heterogeneous-catalyst-for-the-synthesis-of-n-arylimidazoles
#34
Reza Taheri-Ledari, Seyed Masoud Hashemi, Ali Maleki
[This retracts the article DOI: 10.1039/C9RA08062G.].
April 22, 2024: RSC Advances
https://read.qxmd.com/read/38660255/dual-br%C3%A3-nsted-acidic-basic-function-immobilized-on-the-3d-mesoporous-polycalix-4-resorcinarene-as-a-highly-recyclable-catalyst-for-the-synthesis-of-spiro-acenaphthylene-indene-heterocycles
#35
JOURNAL ARTICLE
Aref Mahmoudi Asl, Bahador Karami, Mahnaz Farahi, Zahra Karimi
In this study, a novel dual Brønsted acidic-basic nano-scale porous organic polymer catalyst, PC4RA@SiPr-Pip-BuSO3H, was synthesized through various steps: preparation of a 3D network of polycalix, modification with (3-chloropropyl)-trimethoxysilane, then functionalization of polymer with piperazine and n -butyl sulfonic acid under the provided conditions. The catalyst characterization was performed by FT-IR, TGA, EDS, elemental mapping, PXRD, TEM, and FE-SEM analyses, confirming high chemical stability, activity, recoverability, and excellent covalent anchoring of functional groups...
April 30, 2024: Heliyon
https://read.qxmd.com/read/38657124/structural-evolution-of-gao-x-shell-and-intermetallic-phases-in-ga-pt-supported-catalytically-active-liquid-metal-solutions
#36
JOURNAL ARTICLE
S Carl, J Will, N Madubuko, A Götz, T Przybilla, M Wu, N Raman, J Wirth, N Taccardi, B Apeleo Zubiri, M Haumann, P Wasserscheid, E Spiecker
We present a comprehensive scale-bridging characterization approach for supported catalytically active liquid metal solutions (SCALMS) which combines lab-based X-ray microscopy, nano X-ray computed tomography (nano-CT), and correlative analytical transmission electron microscopy. SCALMS catalysts consist of low-melting alloy particles and have demonstrated high catalytic activity, selectivity, and long-term stability in propane dehydrogenation (PDH). We established an identical-location nano-CT workflow which allows us to reveal site-specific changes of Ga-Pt SCALMS before and after PDH...
April 24, 2024: Journal of Physical Chemistry Letters
https://read.qxmd.com/read/38652819/tuning-electrocatalytic-activities-of-dealloyed-nanoporous-catalysts-by-macroscopic-strain-engineering
#37
JOURNAL ARTICLE
Qite Li, Akira Kudo, Jinling Ma, Ryotaro Kawashima, Kota Toyama, Wence Xu, Zhonghui Gao, Yanqin Liang, Hui Jiang, Zhaoyang Li, Zhenduo Cui, Shengli Zhu, Mingwei Chen
It is technically challenging to quantitatively apply strains to tune catalysis because most heterogeneous catalysts are nanoparticles, and lattice strains can only be applied indirectly via core-shell structures or crystal defects. Herein, we report quantitative relations between macroscopic strains and hydrogen evolution reaction (HER) activities of dealloyed nanoporous gold (NPG) by directly applying macroscopic strains upon bulk NPG. It was found that macroscopic compressive strains lead to a decrease, while macroscopic tensile strains improve the HER activity of NPG, which is in line with the d -band center model...
April 23, 2024: Nano Letters
https://read.qxmd.com/read/38648179/multi-active-sites-loaded-nicu-mof-mwcnts-as-a-bifunctional-electrocatalyst-for-electrochemical-water-splitting-reaction
#38
JOURNAL ARTICLE
Pavithra Suresh, Abirami Natarajan, Arulmozhi Rajaram
Water can be sustainably and ecologically converted by electrocatalysts into hydrogen and oxygen, which, in turn, can be converted into energy. However, the advancement of using water as green energy is hampered by limitations in the study of high-performance catalysts. The purpose of this study was to construct an electrocatalyst by anchoring well-dispersed multiwalled carbon nanotubes (MWCNTs) on nickel-copper (NiCu-MOF) nanoblocks through a simple solvothermal method. The synthesis of NiCu-MOF@MWCNTs demonstrated exceptional electrocatalytic performance for the hydrogen evolution reaction (HER) and oxygen evolution reaction (OER) in an alkaline medium...
April 22, 2024: Langmuir: the ACS Journal of Surfaces and Colloids
https://read.qxmd.com/read/38647212/electrochemical-knocking-down-of-zn-metal-clusters-into-single-atoms
#39
JOURNAL ARTICLE
Jianguo Sun, Jing Yang, Tuo Wang, Song Lin Zhang, Hao Yuan, Wenjie Zang, Yu Liu, Ximeng Liu, Wanwan Wang, Shibo Xi, Chin Ho Kirk, Haimei Wang, Junhui Wang, Xingyang Wang, Usha Bhat, Zhaolin Liu, Shijie Wang, Yong-Wei Zhang, John Wang
Single Atoms Catalysts (SACs) have emerged as a class of highly promising heterogeneous catalysts, where the traditional bottom-up synthesis approaches often encounter considerable challenges in relation to aggregation issues and poor stability. Consequently, achieving densely dispersed atomic species in a reliable and efficient manner remains a key focus in the field. Herein, we report a new facile electrochemical knock-down strategy for the formation of SACs, whereby the metal Zn clusters are transformed into single atoms...
April 22, 2024: Nano Letters
https://read.qxmd.com/read/38644575/ruthenium-cobalt-solid-solution-alloy-nanoparticles-for-enhanced-photopromoted-thermocatalytic-co-2-hydrogenation-to-methane
#40
JOURNAL ARTICLE
Yunxiang Tang, Hao Wang, Chan Guo, Zhengyi Yang, Tingting Zhao, Jiurong Liu, Yanyan Jiang, Wenlong Wang, Quan Zhang, Dongshuang Wu, Yufei Zhao, Xiao-Dong Wen, Fenglong Wang
Bimetallic alloy nanoparticles have garnered substantial attention for diverse catalytic applications owing to their abundant active sites and tunable electronic structures, whereas the synthesis of ultrafine alloy nanoparticles with atomic-level homogeneity for bulk-state immiscible couples remains a formidable challenge. Herein, we present the synthesis of Ru x Co1- x solid-solution alloy nanoparticles (ca. 2 nm) across the entire composition range, for highly efficient, durable, and selective CO2 hydrogenation to CH4 under mild conditions...
April 21, 2024: ACS Nano
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