PHOTOELECTROCHEMICAL

作品数:334被引量:518H指数:9
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相关作者:蔡欣张声森晏洁方岳平杨思源更多>>
相关机构:华南农业大学长沙学院华南理工大学中国科学院金属研究所更多>>
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Boosting syngas production in photoelectrochemical CO_(2) reduction through organic molecule interaction with copper photoanodes
《Nano Research》2025年第4期125-133,共9页Chenchen Zhang Chaofeng Chen Junjun Mao Dan Wang Peng Luan Qingqing Song Yuanming Xie Yao Wang Yong Zhao Ying Zhang Yongfa Zhu 
supported by the National Natural Science Foundation of China(No.22379054);Startup Funding at Jiangnan University.
Photoelectrochemical syngas production using photoanode-driven systems from aqueous CO_(2) is a promising technology.To address the challenge of poor selectivity caused by the wide band gap of photoelectrode,we introd...
关键词:photoelectrochemical(PEC)CO_(2)reduction syngas production PHOTOANODE metal-organic framework(MOF) 
Single atom Cu-O_(2)N bridge between BiVO_(4) and COFs toward photoelectrochemical seawater splitting
《Nano Research》2025年第4期178-188,共11页Zicong Zhang Gaohang Song Wenming Sun Zhaorui Hua Yang Tian 
supported by the National Natural Science Foundation of China(Nos.52172096 and 22375131).
Photoelectrochemical(PEC)water splitting has great potential for solar energy conversion to hydrogen.However,the slow charge transfer in the photoanodes remains a core issue limiting the PEC performance.In this study,...
关键词:single-atom bridge PHOTOELECTROCHEMICAL seawater splitting 
A Distance-Adjustable 3D DNA Scaff old Accelerated Quadruped DNA Walker for the Photoelectrochemical Biosensing of RNA in Phytophthora Infestans
《Journal of Analysis and Testing》2025年第1期71-81,共11页Hui Yang Liying Ge Ziqing Liang Haoran Shen Yingju Liu Kaiyu He Weipeng Liu 
supported by the National Natural Science Foundation of China(32170100,32470085,22274059);Science and Technology Program of Guangzhou(2024A04J5241);Guangdong Basic and Applied Basic Research Foundation(2023A1515012871);Open Fund of Key Laboratory of Information Traceability for Agricultural Products,Ministry of Agriculture and Rural Aff airs(2023KF04)。
Phytophthora infestans,the causative agent of potato late blight,poses a destructive threat to global agricultural production.Herein,a 3D DNA scaff old is elaborately designed as DNA tracks for accelerating the walkin...
关键词:DNA walker Phytophthora infestans PHOTOELECTROCHEMICAL DNA scaffold RNA detection 
Unassisted photoelectrochemical CO_(2)reduction by employingⅢ-Ⅴphotoelectrode with 15%solar-to-fuel efficiency
《Carbon Energy》2025年第3期1-10,共10页Karthik Peramaiah Purushothaman Varadhan Vinoth Ramalingam Bilawal Khan Pradip Kumar Das Hao Huang Hui-Chun Fu Xiulin Yang Vincent Tung Kuo-Wei Huang Jr-Hau He 
supported by the City University of Hong Kong(9380107 and 7005943);King Abdullah University of Science and Technology,and Agency for Science,Technology and Research(C230415018 and C231218003).
Solar-driven carbon dioxide reduction reaction(CO_(2)RR)provides an oppor tunity to produce value-added chemical feedstocks and fuels.However,achieving efficient and stable photoelectrochemical(PEC)CO_(2)RR into selec...
关键词:PHOTOELECTROCHEMICAL oxide derived Au concentrated sunlight selec tive products III V photoelectrode pec devices CO reduction solar fuel efficiency 
ZnCdS-BiFeO_(3) heterojunction loaded with cobalt catalyst boosting photoelectrocatalytic hydrogen evolution
《Science China Materials》2025年第2期483-492,共10页Ling Wang Qing Lou Haixia Qian Xiaoshuang Yin Ying Liu Wenzhong Yang Hui Xu 
supported by the National Natural Science Foundation of China(52002169);the Natural Science Foundation of Jiangsu Province(BK20231277);the Nanjing Tech University Start-up Grant(39837122)。
The advancement of a Z-scheme photoelectrochemical(PEC)system for hydrogen production and watersplitting holds significant promise in addressing the escalatingglobal energy crisis.In this study,a ternary Co-ZnCdS-BiFe...
关键词:ZnCdS-BiFeO_(3) PHOTOELECTROCHEMICAL hydrogen evolution reaction visible light cobaloxime catalyst 
Boosted solar water oxidation steered by atomically precise alloy nanocluster
《Chinese Chemical Letters》2025年第1期349-354,共6页Xian Yan Huawei Xie Gao Wu Fang-Xing Xiao 
The support by the award Program for Minjiang scholar professorship is greatly acknowledged;financially supported by the National Natural Science Foundation of China(Nos.21703038,22072025);The financial support from State Key Laboratory of Structural Chemistry,Fujian Institute of Research on the Structure of Matter,Chinese Academy of Science is acknowledged(No.20240018)。
Atomically precise metal nanoclusters(NCs)have been deemed as a new generation of metal nanomaterials in the field of solar energy conversion due to their unique atomic stacking manner,quantum confinement effects,ligh...
关键词:Alloy nanoclusters SELF-ASSEMBLY Charge transport Photoanodes Photoelectrochemical water oxidation 
Light tuning CO/H_(2)composition on Ag:Unraveling CO_(2)mass transfer and electron-phonon coupling in plasmon-enhanced electrocatalysis
《Nano Research》2025年第1期173-185,共13页Rui Lin Dong Fan Luca MBerger Thomas Possmayer Yu Zhou Jiexin Zhu Xingbao Chen Wen Luo Lars Allmendinger Andreas Tittl Leonardo de Souza Menezes Guillaume Maurin Shihe Yang and Stefan AMaier 
support from Alexander von Humboldt foundation;the National Natural Science Foundation of China(Nos.21972006,U2001217 and 22261160370);the funding from Deutsche Forschungsgemeinschaft(DFG,German Research Foundation)under grant numbers EXC 2089/1-390776260(Germany’s Excellence Strategy)and TI 1063/1(Emmy Noether Program),the Bavarian Program Solar Energies Go Hybrid(SolTech)and the Center for NanoScience(CeNS).Co-funded by the European Union(ERC,METANEXT,101078018);expressed are however those of the author(s)only and do not necessarily reflect those of the European Union or the European Research Council Executive Agency.Neither the European Union nor the granting authority can be held responsible for them.
Plasmon-enhanced electrocatalysis(PEEC)is an emerging approach to mitigate CO_(2)emissions.The mechanisms behind CO_(2)adsorption and reduction at the catalyst-electrolyte interface in PEEC still need to be further ex...
关键词:plasmonic catalysis photoelectrochemical CO_(2)reduction CO/H_(2)ratio hot electron generation electronphonon coupling thermal effect 
A self-powered cathodic molecular imprinting ultrasensitive photoelectrochemical tetracycline sensor via ZnO/C photoanode signal amplification
《Chinese Chemical Letters》2025年第1期539-544,共6页Qinghong Pan Huafang Zhang Qiaoling Liu Donghong Huang Da-Peng Yang Tianjia Jiang Shuyang Sun Xiangrong Chen 
supported by the Fuxiaquan Collaborative Innovation Platform(No.K30001);Major Scientific Research Program for Young and Middle-aged Health Professionals of Fujian Province,China(No.2022ZQNZD007);Youth Innovation Technology Project of Higher School in Shandong Province(Food Nanotechnology Innovation Team)。
Quantitative determination of tetracycline(TC)in environment and foods is of great importance,as excessive residues might have negative effects on human health and environmental risks.Herein,a selfpowered molecularly ...
关键词:Self-powered photoelectrochemical sensor Molecularly imprinted polymer Fe-doped CuBi_(2)O_(4) Tetracycline detection 
Recent advances in tantalum nitride for photoelectrochemical water splitting
《Chinese Journal of Catalysis》2025年第1期51-82,共32页Wenjie Yu Chao Feng Ronghua Li Beibei Zhang Yanbo Li 
国家重点研发计划(2023YFA1507103);国家自然科学基金(22279013,22202031)。
Harnessing solar energy for renewable fuel production through artificial photosynthesis offers an ideal solution to the current energy and environmental crises.Among various methods,photoelectrochemical(PEC)water spli...
关键词:Photoelectrochemical water splitting Tantalum nitride Lightabsorption efficiency Charge separation and transfer EFFICIENCY Surfacereaction rate STABILITY 
Direct photoelectrochemical nitrate synthesis in an acidic electrolyte from N_(2)by a hole coupled oxygen atom transfer process
《Journal of Energy Chemistry》2024年第12期654-660,共7页Zhongyuan Ma Jiaming Miao Kwanghee Kim Gyuyong Jang Youngmoon Choi Seongjae Im Joonhee Kang Kan Zhang Jong Hyeok Park 
supported by the National Natural Science Foundation of China(T2322013);supported by the Ministry of Science and ICT through the National Research Foundation of Korea(2022H1D3A3A01077254,NRF-2019R1A2C3010479)。
Ammonia is an important chemical for pharmaceutical,agriculture,industry,as well as energy production et al.However,the industrial production of ammonia using the Haber-Bosch process is energy-intensive,which stimulat...
关键词:Nitrogen oxidation Tungsten oxide Facet engineering PHOTOELECTROCHEMICAL Oxygen atom transfer 
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