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Yinan Huang
Researcher at Tianjin University
Publications - 26
Citations - 415
Yinan Huang is an academic researcher from Tianjin University. The author has contributed to research in topics: Organic semiconductor & Semiconductor. The author has an hindex of 8, co-authored 15 publications receiving 235 citations.
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Modification of medical metals by ion implantation of copper
TL;DR: Experimental results indicate that the antibacterial property and corrosion resistance should be balanced for medical titanium materials, and marked deteriorated corrosion resistance of 317 L suggests that copper implantation may not be an effective method of improving its antibacterial activity.
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Hygrothermal aging behaviour of VARTMed three-dimensional braided carbon-epoxy composites under external stresses
TL;DR: In this article, the effect of external stresses, both tensile and compressive modes at stress levels of 10 and 20% ultimate tensile strength (UTS), was investigated for three-dimensional braided carbon fiber-epoxy resin composites prepared by vacuum assisted resin transfer molding (VARTM).
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Breathing-effect assisted transferring large-area PEDOT:PSS to PDMS substrate with robust adhesion for stable flexible pressure sensor
Ziting Tan,Hongwei Li,Yinan Huang,Xue Gong,Jiannan Qi,Jie Li,Xiaosong Chen,Deyang Ji,Weibang Lv,Liqiang Li,Liqiang Li,Liqiang Li,Wenping Hu,Wenping Hu +13 more
TL;DR: In this paper, an original breathing-effect assisted transfer (BEAT) strategy was developed to solve the problem of weak interface adhesion, which can cause the conductive polymer film to slip even peel off under external stimulation, which significantly deteriorates the stability of the device.
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Directly writing flexible temperature sensor with graphene nanoribbons for disposable healthcare devices
Xue Gong,Xue Gong,Long Zhang,Long Zhang,Yinan Huang,Shuguang Wang,Ge-Bo Pan,Ge-Bo Pan,Liqiang Li,Liqiang Li +9 more
TL;DR: In this paper, a flexible temperature sensor is firstly developed by directly writing or mask spraying commonly-used paper with a highly thermo-sensitive graphene nanoribbon (GNR) ink.
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Moisture absorption in a three-dimensional braided carbon/Kevlar/epoxy hybrid composite for orthopaedic usage and its influence on mechanical performance
TL;DR: In this paper, the authors investigated the moisture absorption behavior of a three-dimensional (3D) braided carbon/Kevlar/epoxy hybrid composite by immersing in Hank's solution at 37°C for up to 1700h.