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4篇 您的检索式:作者名="Caiwei Lin"
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1Kirigami-inspired,highly stretchable microsupercapacitor patches fabricated by laser conversion and cutting显示文摘The recent developments in material sciences and rational structural designs have advanced the field of compliant and deformable electronics systems.However,many of these systems are limited in either overall stretchability or areal coverage of functional components.Here,we design a construct inspired by Kirigami for highly deformable microsupercapacitor patches with high areal coverages of electrode and electrolyte materials.These patches can be fabricated in simple and efficient steps by laser-assisted graphitic conversion and cutting.Because the Kirigami cuts significantly increase structural compliance,segments in the patches can buckle,rotate,bend and twist to accommodate large overall deformations with only a small strain(<3%)in active electrode areas.Electrochemical testing results have proved that electrical and electrochemical performances are preserved under large deformation,with less than 2%change in capacitance when the patch is elongated to 382.5%of its initial length.The high design flexibility can enable various types of electrical connections among an array of supercapacitors residing in one patch,by using different Kirigami designs.Renxiao Xu Anton Zverev Aaron Hung Caiwei Shen Lauren Irie Geoffrey Ding Michael Whitmeyer Liangjie Ren Brandon Griffin Jack Melcher Lily Zheng Xining Zang Mohan Sanghadasa Liwei Lin 2018Microsystems & Nanoengineering2018,4,1:6
2Characteristic and properties of nano-SiO2-AI2OJEP-PU composite显示文摘Yufei Chen Caiwei Lin Liping WANG Zuoyu Wu 2013Electrical Insualation and Dielectric Phenomena2013,,:1
3A novel Ti cored wire developed for wire-feed arc deposition of TiB/Ti composite coating显示文摘A novel Ti cored wire containing Ti B2,Al60 V40 and Ti6 Al4 V mixed powders was developed for wirefeed arc deposition of Ti B/Ti composite coating,to enhance the hardness and wear resistance of Ti alloy.Results showed that after experiencing several chemical reactions,the wire was melted in the arc zone and turned into nonuniform droplets composed of Ti-Al-V-B melt and undecomposed Ti B2 particles.With the increase of welding current,the detachment time of droplet shortened while the transfer frequency accelerated,accompanied by the improvement in coating surface quality.The spatial distribution of Ti B whiskers in coating was governed by welding current.A uniform distribution could be achieved as welding current was sufficient at the expense of elevated dilution ratio,while increasing wire feeding speed could compensate the dilution loss of Ti B whisker to some extent.The decomposition process of Ti B_(2)particles and the microstructure evolution mechanism of coating was discussed in detail.The optimum coating possessed uniform microstructure,relatively low dilution ratio,and high hardness(639.1 HV_(0.5))as compared with Ti6 Al4 V substrate(326 HV_(0.5)).Indentation morphology analysis verified the excellent performance was ascribed to the load-sharing strengthening of Ti B whiskers.This study provides a high-efficiency fabrication method for the ever-developing titanium matrix composites(TMCs)coating.Yang Bao Lujun Huang Shan Jiang Rui Zhang Qi An Caiwei Zhang Lin Geng Xinxin Ma 2021Journal of Materials Science & Technology2021,,24:0
4Screening for bacterial enzymes synthesizing GPR119 agonist in cAMP-responsive cells显示文摘G protein-coupled receptor 119(GPR119),encoded by human GPR119 gene,is considered as a novel member of cannabinoid receptors.GPR119 is expressed predominantly in the pancreas and gastrointestinal tract of rodents and humans,as well as in the brain of rodents.GPR119 has also been shown to regulate incretin and insulin hormone secretion.Activation of GPR119 causes a reduction in food intake and lowers gain of body weight in rats[1].Targeting GPR119 with specific agonists has thus been attempted as a novel strategy to treat obesity and diabetes[2–4].In addition,GPR119 also plays an important role in bone metabolism,thus making GPR119 a potential target for bone resorption-associated diseases[5].Junfang Jia Yun Chen Lin Xu Yun Yang Xingxing Xu Hongyu Ding Caiwei Jia Hong Gao Pengxiang Guo Ronggui Hu 2021Acta Biochimica et Biophysica Sinica2021,53,1:0
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