《Nano Research》

作品数:7432被引量:13738H指数:34
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《Nano Research》
主办单位:清华大学;中国化学会
最新期次:2025年4期更多>>
发文主题:GRAPHENECONANOSHEETSBATTERIESELECTROCATALYSIS更多>>
发文领域:理学一般工业技术电气工程化学工程更多>>
发文基金:国家自然科学基金国家重点基础研究发展计划中国博士后科学基金北京市自然科学基金更多>>
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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) 
Enzyme-like adaptive Fe-oxo-Co motifs boost oxygen reduction reaction for efficient Zn-air batteries
《Nano Research》2025年第4期134-143,共10页Tian Xia Jiawei Wan Xu Zhou Yilei He Fengmei Su Bifa Ji Yongping Zheng Dan Wang Ranbo Yu 
the National Key Research and Development Program of China(Nos.2022YFA1204500 and 2022YFA1204502);the National Natural Science Foundation of China(Nos.22293043,51932001,52372170,and 92163209);the Beijing-Tianjin-Hebei Basic Research Cooperation Special Project(No.B2024204027);IPE Project for Frontier Basic Research(No.QYJC-2023-08).
Enzyme-like metal atomic site catalysts are promising alternatives of platinum group metals for oxygen reduction reaction(ORR)in fuel cell application.The local coordination structure at metal atomic sites plays a dom...
关键词:ADAPTIVE oxygen reduction reaction dual atomic site Zn-air battery 
Charge-asymmetry RuCo single atom alloy catalyst for efficient hydrogen evolution reaction
《Nano Research》2025年第4期144-152,共9页Yi Yao Huilong Geng Wanchun Duan Lili Zhang Faqiang Xu Huishan Shang 
supported by the National Natural Science Foundation of China(No.22201262).
By incorporating a limited number of precious metal atoms into the base metal,the single-atom alloy catalyst not only optimizes the electronic structure and stability of the catalyst but also emerges as an innovative ...
关键词:single-atom alloy(SAA) atomic regulation charge asymmetry structure hydrogen evolution reaction(HER) 
Mixed-valence Cu-based metal-organic framework for selective CO_(2) electroreduction to C_(1) liquid fuels with high energy conversion efficiency
《Nano Research》2025年第4期153-160,共8页Luyao Wang Fengting Li Yifan Gu 
granted by the National Natural Science Foundation of China(Nos.22376161 and 52373216);the National Key Research and Development Program of China(No.2022YFE0110500);the Fundamental Research Funds for the Central Universities of China.
Efficient CO_(2) electroreduction requires catalysts for enhanced energy conversion efficiency and carbon product selectivity with low overpotential,in consideration of the interference of competitive H_(2) evolution ...
关键词:metal-organic frameworks CO_(2)electroreduction MIXED-VALENCE energy conversion efficiency liquid fuels CATALYSIS 
High-selective Fischer-Tropsch synthesis to jet fuel over confined iron catalysts inside carbon nanocages
《Nano Research》2025年第4期161-168,共8页Fujie Gao Xinyi Wang Ou Zhuo Changkai Zhou Lijun Yang Qiang Wu Yining Fan Xizhang Wang Hongwen Huang Zheng Hu 
jointly supported by the National Key Research and Development Program of China(No.2021YFA1500900);the National Natural Science Foundation of China(Nos.21972061 and 52071174);the Natural Science Foundation of Jiangsu Province,Major Project(No.BK20212005);the Foundation of Science and Technology of Suzhou(No.SYC2022102).
Selective production of specific products,such as jet fuel,in Fischer-Tropsch synthesis(FTS)is a huge challenge due to the Anderson-Schulz-Flory(ASF)distribution law.Herein,by filling K-promoted Fe-based active specie...
关键词:Fischer-Tropsch synthesis confined iron catalysts jet fuel Anderson-Schulz-Flory distribution hierarchical carbon nanocages 
Selective ammonia production via nitrite electroreduction over CoFe layered double hydroxides-decorated 3D TiO_(2) array
《Nano Research》2025年第4期169-177,共9页Yi Liang Xiaoya Fan Xun He Dongdong Zheng Shengjun Sun Yongsong Luo Hao Chen Xuping Sun 
supported by the Sichuan Province Youth Fund Project(No.2025ZNSFSC0897).
Water-soluble nitrite(NO_(2)^(-))in wastewater from agricultural and industrial activities poses ecological and health risks,and its electroreduction shows promise for ammonia(NH3)production,but energy losses from the...
关键词:CoFe-layered double hydroxides(CoFe-LDH) TiO_(2)array electrochemical of NO_(2)-reduction wastewater treatment NH_(3)production 
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 
Uniform Ag_(6)Mo_(10)O_(33) meso/nanowires:High-efficient fabrication,novel growth mechanism,and reversibly high-energy sodium-ion battery
《Nano Research》2025年第4期189-198,共10页Yuqing Yang Juan Liu Meiqi Zhang Qing Wang Ziqing Gui Xucheng Gu Chunsheng Li Yan Sun Yuxuan Sun Lianghuan Qin Yuzhen Zhao Wanzheng Lu Xiaofang Xu Xufeng Wang 
financially supported by the National Natural Science Foundation of China(No.22379103);the Science and Technology Projects of Suzhou City(No.SYC2022043);the Qing Lan Project of Jiangsu Province(2022);Open Project of State Key Laboratory of Inorganic Synthesis and Preparative Chemistry(No.2025-17);Hubei Key Laboratory of Energy Storage and Power Battery(Hubei University of Automotive Technology)(No.ZDK22023B01);the Joint Funds of Advanced Functional Membrane Materials for the Natural Science Foundation of Anhui Province of China(No.2408055UM003).
Silver molybdate(Ag_(6)Mo_(10)O_(33))exhibits excellent catalytic properties and photocatalytic degradation owing to its unique chemical and structural characteristics,but its prospective applications in electrochemis...
关键词:sodium-ion batteries self-assembly-dissolution-recrystallization-Ostwald-ripening fabricating mechanism microwave irradiation fabrication Ag_(6)Mo_(10)O_(33)meso/nanowires energy storage and conversion 
Activating lithium storage in 2D CaSi_(2) anode via enhancing pseudocapacitive properties with oxygen modification engineering
《Nano Research》2025年第4期199-206,共8页Yongzheng Zhang Lu Sun Kailin Yang Youwang Ye Liang Zhan Qi Wei Jianan Gu 
supported partially by project of the National Natural Science Foundation of China(Nos.62474064 and 52102203);the Fundamental Research Funds for the Central Universities(No.2024MS082);the NCEPU“Double First-Class”Program.
Silicon(Si)has emerged as a promising anode material for lithium-ion batteries(LIBs)due to its extremely high theoretical capacity of 4200 mAh·g^(-1).However,its practical application is limited by several critical c...
关键词:two-dimensional(2D)CaSi_(2)O_(x) Si anode volume change PSEUDOCAPACITIVE surface modification lithium storage 
Correlation between structure,microstructure and electrochemical properties of Prussian white cathode material for sodium-ion batteries
《Nano Research》2025年第4期207-218,共12页Nataliya Yu.Samoylova Marina E.Donets Roman N.Vasin Sergei V.Sumnikov Ekaterina A.Korneeva Alexander S.Sohatsky Evgeny V.Andreev Svetlana G.Protasova Rais N.Mozhchil Nickolay A.Kolyshkin 
financially supported by the Russian Science Foundation(No.21-12-00261).
Sodium hexacyanoferrate,or Prussian white(PW),is a cheap cathode material for rechargeable sodium-ion batteries,exhibiting high capacity and charge/discharge rate.Tailoring structure and microstructure of PW to furthe...
关键词:Prussian white sodium-ion batteries ball milling phase transitions X-ray diffraction 
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