WET-SPINNING

作品数:23被引量:40H指数:4
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相关领域:化学工程更多>>
相关作者:陈新更多>>
相关机构:教育部更多>>
相关期刊:《Journal of Wuhan University of Technology(Materials Science)》《Regenerative Biomaterials》《Advanced Fiber Materials》《Chemical Research in Chinese Universities》更多>>
相关基金:国家自然科学基金中国博士后科学基金河南省自然科学基金国家高技术研究发展计划更多>>
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Wet Spinning Technology for Aerogel Fiber:Pioneering the Frontier of High‑Performance and Multifunctional Materials被引量:1
《Advanced Fiber Materials》2024年第6期1669-1709,共41页Xue Guo Yuxin Zhang Jie Li Yi Hao Huizhen Ke Pengfei Lv Qufu Wei 
financially by the National Natural Science Foundation of China(52003191);Young Elite Scientists Sponsorship Program by CAST(2022QNRC001);the Natural Science Foundation of Jiangsu Province(BK20221539);Science and Technology Program of Jiangsu Administration for Market Regulation(KJ2024013);Fuzhou Changle District Major Science and Technology Project:'Leading the Charge with Open Competition'(CLJBGS20220001).
Aerogel fiber has broad applications in thermal insulation,pollution adsorption,biomedicine,energy storage,and aerospace.However,the large-scale and continuous production of aerogel fibers remains a significant challe...
关键词:Wet-spun aerogel fiber Porous core-dense sheath structure Customized wet-spinning strategies Thermal insulation 
Preparation by Wet-spinning and Properties Polyaniline-Polyethersulfone Fibers for Flexible Supercapacitor Electrodes
《Journal of Wuhan University of Technology(Materials Science)》2024年第6期1406-1415,共10页MEI Yin LIU Hang TANG Haixiong HE Yining WANG Di LI Qiong 
Funded by the Hubei Integrative Technology and Innovation Center for Advanced Fiberous Materials Open Fund (No.XC202425)。
Flexible PANI-Polyethersulfone (PES) fibers were fabricated using the wet-spinning technique.PANI particles were uniformly distributed within the matrix and micropores formed by the phase separation of PES,which preve...
关键词:POLYANILINE POLYETHERSULFONE WET-SPINNING flexible supercapacitor 
Wet-spinning of carbon nanotube fibers:dispersion,processing and properties
《National Science Review》2024年第10期122-152,共31页Zhicheng Yang Yinan Yang Yufei Huang Yanyan Shao He Hao Shendong Yao Qiqing Xi Yinben Guo Lianming Tong Muqiang Jian Yuanlong Shao Jin Zhang 
supported by the National Key R&D Program of China(2022YFA1203302 and 2022YFA1203304);the National Natural Science Foundation of China(T2188101),the Gusu’s young leading talent(ZXL2021449 to Y.S.);the Key Industry Technology Innovation Project of Suzhou(SYG202108 to Y.S.).
Owing to the intrinsic excellent mechanical,electrical,and thermal properties of carbon nanotubes(CNTs),carbon nanotube fibers(CNTFs)have been expected to become promising candidates for the next-generation of high-pe...
关键词:carbon nanotube fiber WET-SPINNING DISPERSIBILITY physical property-structure relationship 
Scalable one-step wet-spinning of triboelectric fibers for large-area power and sensing textiles被引量:4
《Nano Research》2023年第5期7518-7526,共9页Chuan Ning Chuanhui Wei Feifan Sheng Renwei Cheng Yingying Li Guoqiang Zheng Kai Dong Zhong Lin Wang 
the National Natural Science Foundation of China(No.22109012);Natural Science Foundation of the Beijing Municipality(Nos.L222037 and 2212052);the Fundamental Research Funds for the Central Universities(No.E1E46805).
Textile-based electronic devices have attracted increasing interest in recent years due to their wearability,breathability,comfort.Among them,textile-based triboelectric nanogenerators(T-TENGs)exhibit remarkable advan...
关键词:triboelectric nanogenerators coaxial wet spinning scale production large-area integration self-powered sensing 
Porous Graphene-Based Electrodes for Fiber-Shaped Supercapacitors with Good Electrical Conductivity被引量:1
《Journal of Donghua University(English Edition)》2023年第2期134-141,共8页向睿芳 陈馨逸 刘岩 张坤 陆春红 
National Natural Science Foundation of China(No.51903033);Shanghai Sailing Program,China(No.19YF1400800)。
Graphene fibers(GFs)are ideal electrodes for f ibrous supercapacitors because of their excellent mechanical and electrical properties.However,the actual specific s urface area(SSA)of GFs is low due to the restacking o...
关键词:graphene fiber(GF) WET-SPINNING polypyrrole(PPy) capacitance supercapacitor 
Recent Progress of Applying Mesoscopic Functionalization Engineering Principles to Spin Advanced Regenerated Silk Fibroin Fibers被引量:3
《Advanced Fiber Materials》2022年第3期390-403,共14页Wu Qiu Xiang Yang Liu 
This work was financially supported by the National Natural Science Foundation of China(Grant no.12074322);Science and Technology Project of Xiamen City(3502Z20183012);Science and Technology Planning Project of Guangdong Province(2018B030331001);Shenzhen Science and technology plan project(JCYJ20180504170208402).
The Bombyx mori silk fbers are regarded as one of the most fascinating fexible materials in the twenty-frst century and have shown great potential in areas including fber sensors,fber actuators,optical fbers,energy ha...
关键词:Silk fbroin Mesoscopic structure WET-SPINNING Mesoscopic reconstruction 
Strong and Tough TPU Fibers with Orientedly Aligned CNTs Reinforced by Amorphous ZrO_(2)被引量:1
《Chemical Research in Chinese Universities》2022年第3期763-768,共6页LI Yangbei LIU Shaojia ZHAO Hewei GUO Lin 
This work was supported by the National Key R&D Program of China(Nos.2020YFA0710403,2020YFA0710404);the National Natural Science Foundation of China(Nos.52073008,U1910208).
High strength and high toughness are vital for fibers’engineering applications,but are hard to simultaneously achieve.Herein,we synthesize a carbon nanotube(CNT)-thermoplastic polyurethanes(TPU)fiber reinforced by an...
关键词:Strong and tough fiber Carbon nanotube Amorphous ZrO_(2) Orientated alignment WET-SPINNING 
A novel strategy for producing high-performance continuous regenerated fibers with wool-like structure被引量:1
《SusMat》2022年第1期90-103,共14页Guang Sheng Cao Ze Ping Zhang Min Zhi Rong Ming Qiu Zhang 
National Natural Science Foundation of China,Grant/Award Numbers:52033011,51773229,51873235,51973237;Natural Science Foundation of Guangdong Province,Grant/Award Numbers:2019B1515120038,2021A1515010417,2020A1515011276;Science and Technology Planning Project of Guangdong Province,Grant/Award Number:2020B010179001;Industry-University-Research Collaboration Project of Zhuhai City,Grant/Award Number:ZH22017001200004PWC。
We proposed a novel approach to prepare high-performance continuous regenerated keratin fibers with wool-like structure by using the cortical cells and linear keratin from wool waste as reinforcement and adhesive,resp...
关键词:continuous regenerated fibers cortical cells KERATIN WET-SPINNING wool waste 
Recombinant Pyriform Spider Silk Expression and Wet-Spinning
《Journal of Donghua University(English Edition)》2022年第1期28-34,共7页LIEBIEDIEV Pavlo LIN Ying 
National Natural Science Foundation of China(No.31470836);Science and Technology Commission of Shanghai Municipality,China(No.19ZR1471000)。
Spider silk is capturing the attention of scientists for its mechanical properties,biocompatibility,and biodegradability.Spiders can produce six types of silks,as well as special glue,which are used for survival and r...
关键词:spidroin expression protein purification pyriform spidroin(PySp) recombinant spider silk WET-SPINNING mechanical property 
Electrochemical Performance of Core-Sheath Dip-Coated Lignin Derived Carbon/Wet-Spun Graphene Electrodes for Fiber-Shaped Supercapacitors被引量:1
《Journal of Donghua University(English Edition)》2021年第2期91-98,共8页HU Wenxin LIU Yan XIANG Ruifang JING Yuanyuan XU Qingli ZHANG Juan HU Xuefeng JIN Yanhong YANG Xiaona CHENG Yu LIN Jiaxian ZHANG Kun LU Chunhong 
National Natural Science Foundation of China(No.51903033);Fundamental Research Funds for the Central Universities,China(Nos.2232020G-01 and 20D110110);Shanghai Sailing Program,China(No.19YF1400800)。
One-dimensional graphene fibers(GFs)possess excellent properties,including high electrical conductivity,good physical and chemical stability,high thermal conductivity,flexibility,etc.GFs are ideal electrode materials ...
关键词:WET-SPINNING lignin derived carbon GRAPHENE specific capacitance energy density 
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