FAILED
首站-论文投稿智能助手
典型文献
Transformation of Fibrous Membranes from Opaque to Transparent under Mechanical Pressing
文献摘要:
There is a great demand for transparent films,membranes,or substrates in the fields of intelligent wearables,electronic skins,air filtration,and tissue engineering.Traditional materials such as glass and plastics cannot satisfy these requirements because of the lack of interconnected pores,undesirable porosity,and flexibility.Electrospun fibrous membranes offset these shortcomings because they contain small pores and have high porosity as well as outstanding flexibility.Thus,the development of transpar-ent electrospun fibrous membranes is of great value.This work reports a simple and effective way to develop flexible and porous transparent fibrous membranes(TFMs)directly from electrospun fibrous membranes via mechanical pressing,without employing any other additives.In addition,the relationship between the transparency performance and the molecular structure of the polymers after pressing was summarized for the first time.After mechanical pressing,the membranes maintained fibrous morphol-ogy,micron-sized pores,and desired porosity.Polystyrene fibrous membranes,which exhibited excellent optical and mechanical properties,were used as a reference.The TFMs possessed high transparency(~89%visible light transmittance at 550 nm),high porosity(10%-30%),and strong mechanical tensile strength(~148 MPa),nearly 78 times that of the pristine electrospun fibrous membranes.Moreover,this study demonstrated that transparent and conductive membranes can be fabricated based on TFMs using vacuum-assisted filtration of silver nanowires followed by mechanical pressing.Compared with indium tin oxide films,conductive TFMs exhibited good electrical conductivities(9 Ω per square(Ω·sq-1),78%transmittance at 550 nm)and notable mechanical performance(to bear abundant bending stresses).
文献关键词:
作者姓名:
Chao Wang;Jing Zhao;Liu Liu;Peng Zhang;Xianfeng Wang;Jianyong Yu;Bin Ding
作者机构:
State Key Laboratory for Modification of Chemical Fibers and Polymer Materials,College of Textiles,Donghua University,Shanghai 201620,China;Innovation Center for Textile Science and Technology,Donghua University,Shanghai 200051,China;State Center for International Cooperation on Designer Low-carbon and Environmental Materials,School of Materials Science and Engineering,Zhengzhou University,Zhengzhou 450001,China
文献出处:
引用格式:
[1]Chao Wang;Jing Zhao;Liu Liu;Peng Zhang;Xianfeng Wang;Jianyong Yu;Bin Ding-.Transformation of Fibrous Membranes from Opaque to Transparent under Mechanical Pressing)[J].工程(英文),2022(12):84-92
A类:
Opaque,TFMs
B类:
Transformation,Fibrous,Membranes,from,Transparent,under,Mechanical,Pressing,There,great,demand,transparent,films,membranes,substrates,fields,intelligent,wearables,electronic,skins,air,filtration,tissue,engineering,Traditional,materials,such,glass,plastics,cannot,satisfy,these,requirements,because,lack,interconnected,pores,undesirable,porosity,flexibility,Electrospun,fibrous,offset,shortcomings,they,contain,small,have,high,well,outstanding,Thus,development,electrospun,value,This,work,reports,simple,effective,way,flexible,porous,directly,via,mechanical,pressing,without,employing,any,other,additives,In,addition,relationship,between,transparency,performance,molecular,structure,polymers,after,was,summarized,first,After,maintained,morphol,ogy,micron,sized,desired,Polystyrene,which,exhibited,excellent,optical,properties,were,used,reference,possessed,visible,light,transmittance,strong,tensile,strength,nearly,times,that,pristine,Moreover,this,study,demonstrated,conductive,fabricated,using,vacuum,assisted,silver,nanowires,followed,by,Compared,indium,oxide,good,electrical,conductivities,square,notable,bear,abundant,bending,stresses
AB值:
0.598127
相似文献
High-Porosity Foam-Based Iontronic Pressure Sensor with Superhigh Sensitivity of 9280 kPa-1
Qingxian Liu;Yuan Liu;Junli Shi;Zhiguang Liu;Quan Wang;Chuan Fei Guo-School of Astronautics,Harbin Institute of Technology,Harbin 150001,Heilongjiang,People's Republic of China;Department of Materials Science and Engineering,Southern University of Science and Technology,Shenzhen 518055,People's Republic of China;Department of Mechanics and Aerospace Engineering,Southern University of Science and Technology,Shenzhen 518055,Guangdong,People's Republic of China;Guangdong Provincial Key Laboratory of Functional Oxide Materials and Devices,Southern University of Science and Technology,Shenzhen 518055,Guangdong,People's Republic of China;Department of Physics and TcSUH,University of Houston,Houston,TX 77204,USA;8320 Crescent Village Circle Unit 1413,San Jose,CA 95134,USA;Department of Mechanical Engineering,Massachusetts Institute of Technology,Cambridge,MA 02139,USA;Department of Civil and Environmental Engineering,Shantou University,Shantou 515063,Guangdong,People's Republic of China
Biodegradable,Super-Strong,and Conductive Cellulose Macrofibers for Fabric-Based Triboelectric Nanogenerator
Sanming Hu;Jing Han;Zhijun Shi;Kun Chen;Nuo Xu;Yifei Wang;Ruizhu Zheng;Yongzhen Tao;Qijun Sun;Zhong Lin Wang;Guang Yang-College of Life Science and Technology,Huazhong University of Science and Technology,Wuhan 430074,People's Republic of China;Beijing Institute of Nanoenergy and Nanosystems,Chinese Academy of Sciences,Beijing 101400,People's Republic of China;State Key Laboratory of New Textile Materials and Advanced Processing Technologies,Wuhan Textile University,Wuhan 430200,People's Republic of China;School of Nanoscience and Technology,University of Chinese Academy of Sciences,Beijing 100049,People's Republic of China;Center On Nanoenergy Research,School of Physical Science and Technology,Guangxi University,Nanning 530004,People's Republic of China;School of Materials Science and Engineering,Georgia Institute of Technology,Atlanta,GA 30332-0245,USA
Humidity Sensing of Stretchable and Transparent Hydrogel Films for Wireless Respiration Monitoring
Yuning Liang;Qiongling Ding;Hao Wang;Zixuan Wu;Jianye Li;Zhenyi Li;Kai Tao;Xuchun Gui;Jin Wu-State Key Laboratory of Optoelectronic Materials and Technologies and the Guangdong Province Key Laboratory of Display Material and Technology,School of Electronics and Information Technology,Sun Yat-Sen University,Guangzhou 510275,People's Republic of China;Ministry of Education Key Laboratory of Micro and Nano Systems for Aerospace,Northwestern Polytechnical University,Xi'an 710072,People's Republic of China Acknowledgements J.W.acknowledges financial supports from the National Natural Science Foundation of China(61801525),the Guangdong Basic and Applied Basic Research Foundation(2020A1515010693)and the Fundamental Research Funds for the Central Universities,Sun Yat-sen University(22lgqb17).
pH-indicative Films Based on Chitosan-PVA/Sepiolite and Anthocyanin from Red Cabbage:Application in Milk Packaging
Marya Raji;Laila El Foujji;Mohamed El Mehdi Mekhzoum;Mounir El Achaby;Hamid Essabir;Rachid Bouhfid;Abou el kacem Qaiss-Moroccan Foundation for Advanced Science,Innovation and Research,Composites and Nanocomposites Center,Rabat Design Center,Rue Mohamed El Jazouli,Madinat El Irfane,Rabat 10100,Morocco;Faculty of Science,Laboratoire de Chimie Organique Et Hétérocyclique,University Mohammed V in Rabat,Rabat 10100,Morocco;Materials Science and Nano-Engineering Department,Mohammed VI Polytechnic University,Lot 660-Hay Moulay Rachid,Ben Guerir 43150,Morocco;Mechanic,Materials,and Composites(MMC),Laboratory of Energy Engineering,Materials and Systems,National School of Applied Sciences of Agadir,Ibn Zohr University,Agadir 80000,Morocco
机标中图分类号,由域田数据科技根据网络公开资料自动分析生成,仅供学习研究参考。