CLOTH

作品数:160被引量:156H指数:6
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相关领域:文化科学更多>>
相关作者:陈小虎金志霖刘晓强饶玲珊赵晓霞更多>>
相关机构:中纺标(北京)检验认证中心有限公司纺织工业标准化研究所南京玻璃纤维研究设计院有限公司国家玻璃纤维产品质量监督检验中心更多>>
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相关基金:国家自然科学基金中国博士后科学基金上海市自然科学基金广东省自然科学基金更多>>
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  • 期刊=Advanced Fiber Materialsx
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Mass‑Producible Hybrid Polytetrafluoroethylene Nanofiber Mat with Radial Island‑Chain Architecture as Anti‑pathogen Cloth in Individual Protection
《Advanced Fiber Materials》2024年第6期1839-1854,共16页Bin Yu Haiyan Shi Xiangdong Han Shuaiwei Wang Ruiqi Sheng Liujun Gu Xiaoliang Liu Ke Zhang Tao Huang Meifang Zhu Hao Yu 
supported by the National Key Research and Development Program of China(2022YFB3804205);the National Natural Science Foundation of China(52203309,52373240);the Shanghai Sailing Program(22YF1400400);the Shanghai Rising-Star Program(23QA1400100);the Fundamental Research Funds for the Central Universities(2232022D-09);the Open Fund of State Key Laboratory of Biobased Fiber Manufacturing Technology(SKL202317).
Developing an advanced individual protection cloth is a pivotal factor in combating global pathogen epidemics.However,formidable challenges are posed by the triangularity imbalance effect,necessitating the simultaneou...
关键词:Hybrid PTFE nanofiber mat Waterproofing and breathability Mass-producible anti-pathogen cloth Radial island-chain architecture Individual protection 
MnO_(2)/Poly-L-lysine Co-decorated Carbon Fiber Cloth with Decreased Evaporation Enthalpy and Enhanced Photoabsorption/Antibacterial Performance for Solar-Enabled Anti-fouling Seawater Desalination
《Advanced Fiber Materials》2024年第5期1569-1582,共14页Xinxing Song Xiaolong Li Bo Zhu Songmei Sun Zhigang Chen Lisha Zhang 
supported by the National Key R&D Program Projects(2022YFB3804905,2022YFB3804902);the National Natural Science Foundation of China(52161145406,42376045);the Fundamental Resaearch Funds for the Central Universities(2232024Y-01);the Natural Science Foundation of Shanghai(21ZR1402500).
Solar-driven seawater evaporation is a potential strategy for mitigating global freshwater shortage,but its application is hindered by the photothermal membranes with high evaporation enthalpy,unsatisfactory photoabso...
关键词:Manganese oxide POLY-L-LYSINE Carbon fiber cloth ANTI-FOULING Solar-driven evaporation 
MXene/Cellulose Composite Cloth for Integrated Functions(if‑Cloth)in Personal Heating and Steam Generation被引量:2
《Advanced Fiber Materials》2024年第1期252-263,共12页Jian Chang Bo Pang Hao Zhang Kanglei Pang Miao Zhang Jiayin Yuan 
support from ERC Consolidator Grant PARIS-101043485 from the European Research Council,Swedish Research Council Grant 2018-05351;the Wallenberg Academy Fellow program(Grant KAW 2017.0166)in Sweden and the Wallenberg Initiative Materials Science for Sustainability(WISE)funded by the Knut and Alice Wallenberg Foundation(project number:WISE-AP01-D197);support from the Swedish Research Council(2021-05839)and Aforsk Foundation(22-274).
Given the abundant solar light available on our planet,it is promising to develop an advanced fabric capable of simultaneously providing personal thermal management and facilitating clean water production in an energy...
关键词:Composite cloth Solar heating Personal heating Steam generation 
Growth of BiOBr/ZIF‑67 Nanocomposites on Carbon Fiber Cloth as Filter‑Membrane‑Shaped Photocatalyst for Degrading Pollutants in Flowing Wastewater被引量:8
《Advanced Fiber Materials》2022年第6期1620-1631,共12页Xiaolong Li Ting Liu Yan Zhang Jiafeng Cai Mengqiang He Maoquan Li Zhigang Chen Lisha Zhang 
This work was financially supported by the Natural Science Foundation of Shanghai(21ZR1402500);the National Natural Science Foundation of China(52161145406);the Open Project Program of the State Key Laboratory of Photocatalysis on Energy and Environment for the Fuzhou University;the Fundamental Research Funds for the Central Universities,and DHU Distinguished Young Professor Program.
BiOBr-based nanocomposite photocatalysts are used for removing the organic pollutants,but their poor adsorption/photocatalytic performances and the low potential for recycling limit their application.To solve the issu...
关键词:Carbon fiber cloth BiOBr/ZIF-67 Adsorption PHOTOCATALYST Flowing wastewater 
High‑Valence Transition Metal Modified FeNiV Oxides Anchored on Carbon Fiber Cloth for Efficient Oxygen Evolution Catalysis
《Advanced Fiber Materials》2022年第4期774-785,共12页Zihe Wu Jiehui Yang Wenjie Shao Menghao Cheng Xianglin Luo Mi Zhou Shuang Li Tian Ma Chong Cheng Changsheng Zhao 
National Natural Science Foundation of China(Nos.52173133,51903178,81971622,and 51803134);the Science and Technology Project of Sichuan Province(2021YFH0135,2020YJ0055,and 2020YFH0087);China Postdoctoral Science Foundation(2021M692303);the Post-Doctor Research Project of Sichuan University(No.2021SCU12013);the 1・3・5 Project for Disciplines of Excellence,West China Hospital,Sichuan University(No.ZYJC21047);Prof.Cheng acknowledges the financial support of the State Key Laboratory of Polymer Materials Engineering(Grant No.sklpme2021-4-02);Fundamental Research Funds for the Central Universities,and Thousand Youth Talents Plan.Dr.S.Li acknowledges the financial support by the Deutsche Forschungsgemeinschaft(DFG,German Research Foundation)under Basismodul,Eigene Stelle(LI 3545/1-1).
Developing efficient and durable non-noble metal-based oxygen evolution catalysts is of great importance for electrochemical water splitting.Here,we report a new and facile strategy for controllable synthesis of high-...
关键词:ELECTROCATALYSTS Transition metal-based materials Oxygen evolution reaction High-valence metals Water splitting 
Carbon Fiber Supported Binary Metal Sulfide Catalysts with Multi-Dimensional Structures for Electrocatalytic Nitrogen Reduction Reactions Over a Wide pH Range被引量:6
《Advanced Fiber Materials》2021年第4期229-238,共10页Tianyi Zhang Wei Zong Yue Ouyang Yue Wu Yue-E Miao Tianxi Liu 
support from the Natural Science Foundation of Shanghai(20ZR1401400,18ZR1401600);Shanghai Scientific and Technological Innovation Project(18JC1410600).
Green and environmentally friendly electrocatalytic nitrogen(N_(2))fixation to synthesize ammonia(NH3)is recognized as an effective method to replace the traditional Haber-Bosch process.However,the difficulties in N_(...
关键词:Multi-dimensional structure Heteroatom doping Carbon fiber cloth Electrocatalytic nitrogen reduction 
Construction of n-TiO_(2)/p-Ag_(2)O Junction on Carbon Fiber Cloth with Vis-NIR Photoresponse as a Filter-Membrane-Shaped Photocatalyst被引量:3
《Advanced Fiber Materials》2020年第1期13-23,共11页Gumila Duoerkun Yan Zhang Zhun Shi Xiaofeng Shen Wei Cao Ting Liu Jianshe Liu Quanyuan Chen Lisha Zhang 
This work was supported by the Fundamental Research Funds for the Central Universities;DHU Distinguished Young Professor Program,National Key Research and Development Program of China(2016YFC0400501,2016YFC0400502).
The development of effective and reusable photocatalysts with broad-spectra activity has attracted attention.Herein,we have constructed n-TiO_(2)/p-Ag_(2)O junction on carbon fiber(CF)cloth as an efficient and recycla...
关键词:Carbon fiber cloth n-TiO_(2)/p-Ag_(2)O junction Vis-NIR photoresponse PHOTOCATALYST Filter-membrane 
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