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17篇 您的检索式:作者名="PEI Qibing"
    题名 作者 年代 出处 被引量
1Flexible and stretchable electrodes for next generation polymer electronics: a review显示文摘Transparent conductive electrodes play a significant role in the fabrication and development of optoelectronic devices. As next generation optoelectronic devices tend towards mobile and wearable devices, the added attribute of flexibility or stretchability for these electrodes becomes increasingly important. However, mechanical requirements aside, transparent conductive electrodes must still retain high transparency and conductivity, with the metrics for these parameters being compared to the standard, indium tin oxide. In the search to replace indium tin oxide, two materials that have risen to the forefront are carbon nanotubes and silver nanowires due to their high transparency, conductivity, mechanical compliance, and ease of fabrication. This review highlights recent innovations made by our group in electrodes utilizing carbon nanotubes and silver nanowires, in addition to the use of these electrodes in discrete devices and integrated systems.Dustin Chen Jiajie Liang Qibing Pei 2016Science China Chemistry2016,59,6:8
2Ul- trahigh strain response of field-actuated elastomeric polymers显示文摘KORNBLUH R PELRINE R PEI Qibing 2000Smart Structures and Materials2000,3987,:1
3Intrinsically stretchable transparent electrodes based on silver-nanowire–crosslinked-polyacrylate composites显示文摘Weili Hu Xiaofan Niu Lu Li Sungryul Yun Zhibin Yu Qibing Pei 2012Nanotechnology2012,,34:1
4Multifunctional electroelastomer rolls and their application for biomimetie walking robots显示文摘Qibing Pei Ron Pelrine Scott Stanford Roy Kornbluh Marcus Rosenthal Kenneth Meijer Robert Full 2002SPIE Smart Structures and Materials 2002: Industrlal and Commercial Applications of Smart Structures Technologies2002,4698,:1
5Multifunctional electroelastomer rolls and their application for hiomimetic walking robots显示文摘Qibing Pei Marcus Rosenthal Ron Pelrine Scott Stanford Roy Kornbluh 2003SPIE Smart Structures and Materials 2003: Electroactive Polymer Actuators and Devices (EAPAD)2003,5051,:1
6An electrically-conductive composite prepared by electrochemical polymerization of pyrrole into polyurethane显示文摘Bi Xiantong Pei Qibing 1987Synthetic Metals1987,22,2:1
7Dielectric Elastomers: Generator Mode Fundamentals and Applications显示文摘Ron Peirine Roy Kornbluh Joe Eckerle Phil Jeuck Seajin Oh Qibing Pei Scott Stanford 2001SPIE Smart Structures and Materials 2001 : Electroactive Polymer Actuators and Devices2001,4329,:1
8Electro-oxidative polymerization of aniline on platinum anodes coated with polyurethane film 显示文摘Pei Qibing Bi Xiantong 1989Synthetic Metals1989,30,3:1
9A Healable, Semitransparent Silver Nanowire‐Polymer Composite Conductor显示文摘Chaokun Gong Jiajie Liang Wei Hu Xiaofan Niu Sungwon Ma H. Thomas Hahn Qibing Pei 2013Adv Mater2013,,30:1
10High-Speed Electrically Actuated Elastomers with Strain Greater than 100%显示文摘Ron Pelrine Roy Kornbluh Pei Qibing etal 2000Science2000,287,5454:1
11High -Speed E-lectrically Actuated Elastomers with Strain Greater Than 100% 显示文摘Ron Pelrine Roy Kombluh Qibing Pei 2000Science2000,287,4:1
12Polymer light-emitting electrochemical cells:Recent developments to stabilize the p-i-n junction and explore novel device applications显示文摘Polymer light-emitting electrochemical cells (PLECs) employ a thin layer of a luminescent conjugated polymer admixed with an ionic source and an ionic conductor for the in-situ formation of p-i-n junction and subsequent efficient injections of both electrons and holes.The junction formation enables the use of air-stable conductors as the cathode and a relatively thick emissive polymer layer that is more compatible with low-cost solution-based processes.This paper overviews the operation mechanism of the PLECs,the properties and drawbacks of the devices.The employment of crosslinkable ionic conductors to stabilize the p-i-n junction is reviewed.The resulting static junction electroluminesces light at high brightness,high efficiency,and prolonged lifetime.Silver paste and carbon nanotubes can be used as the cathode,thus,PLECs were fabricated by lamination.Using single wall carbon nanotubes coated elastic substrate as both anode and cathode,the PLECs can be made highly stretchable.YU ZhiBin LI Lu GAO HuiEr PEI QiBing 2013Science China Chemistry2013,56,8:1
13Protonation and deprotonation of polypyrrole chain in aqueous solutions显示文摘Pei Qibing Qian Renyuan 1991Synthetic Metals1991,45,:1
14Ultrahigh strain response of field-actuated elastomeric polymers显示文摘Roy Kornbluh Ron Pelrine Qibing Pei 2000Proceedings of SPIE2000,3987,:1
15Electrochromic and highly stable poly(3,4-ethylenedilxythiophene) switches between opaque blue-black and transparent sky blue 显示文摘 Guido Zuecarello Markus Ahlskog etc 1994Polymer1994,35,7:1
16Dielectric elastomer artificial muscle materials advancement and soft robotic applications显示文摘Conventional robotic systems are built with rigid materials to deal with large forces and predetermined processes.Soft robotics,however,is an emerging field seeking to develop adaptable robots that can perform tasks in unpredictable environments and biocompatible devices that close the gap between humans and machines.Dielectric elastomers(DEs)have emerged as a soft actuation technology that imitates the properties and performance of natural muscles,making them an attractive material choice for soft robotics.However,conventional DE materials suffer from electromechanical instability(EMI),which reduces their performance and limits their applications in soft robotics.This review discusses key innovations in DE artificial muscles from a material standpoint,followed by a survey on their representative demonstrations of soft robotics.Specifically,we introduce modifications of DE materials that enable large strains,fast responses,and high energy densities by suppressing EMI.Additionally,we examine materials that allow variable stiffness and self‐healing abilities in DE actuators.Finally,we review dielectric elastomer actuator(DEA)applications in soft robotics in four categories,including automation,manipulation,locomotion,and human interaction.Yuxuan Guo Qicong Qin Ziqing Han Roshan Plamthottam Mason Possinger Qibing Pei 2023SmartMat2023,4,4:0
17Fault-tolerant silicone dielectric elastomers显示文摘Soft silicone films have garnered a great deal of interest for use in dielectric elastomer transducers due to their excellent properties,including high elongation to rupture,low viscoelasticity,and broad application temperature range.However,silicone films generally have higher stiffness and lower dielectric strength than VHB acrylic elastomers,which limits the achievable actuation strain.Devices based on silicone dielectric elastomers always experience high rates of premature dielectric failure when operated at high strains.The premature failure is characterized by the loss of functionality or mechanical rupture of the material when operated below the material’s dielectric strength and elongation to rupture.The use is reported of ultrathin coatings of single-walled carbon nanotubes(SWNTs)as the compliant electrodes,which can overcome the issue of premature failure.The self-clearing of the SWNT electrodes in the event of localized dielectric breakdown improves the apparent dielectric strength of the material by isolating the regions of reduced dielectric strength.The actuators may be operated at higher than 50%area strain with reasonably long lifetimes.High strains were measured between-40 and 80℃and in a broad frequency range up to 100 Hz.The fault tolerance introduced by the SWNT electrodes should broaden the application scope of silicone dielectric elastomers.Wei Yuan Huafeng Li Paul Brochu Xiaofan Niu Qibing Pei 2010International Journal of Smart and Nano Materials2010,1,1:0
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