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5篇 您的检索式:作者名="Hanlin Fang"
    题名 作者 年代 出处 被引量
1The Ductile Deformation Characteristics of Caledonian Intracontinental Orogeny in the Northeastern Jiangshan-Shaoxing Tectonic Zone:Insights from Magnetic Fabric Study and Its Geodynamic Implication显示文摘The Jiangshan-Shaoxing tectonic zone was the northeastern boundary between the Yangtze Block and the Cathaysia Block during the Neoproterozoic and was an intracontinental orogenic belt during late of the early Paleozoic.In this tectonic zone,there develops a lot of mylonite underwent strong ductile deformation and schist,gneiss,and amphibolite with medium and high grade metamorphism which was formed during the late of early Paleozoic.The research of geometry and kinematic of ductile deformation in Jiangshan-Shaoxing tectonic zone is very important to reveal the tectonic process of intracontinental orogeny.This paper uses the anisotropy of magnetic susceptibility(AMS)to determine the ductile deformation geometry and kinematic of Jiangshan-Shaoxing tectonic zone combing with the field survey.In this study,190 specimens of 19 locations and 221 specimens of23 locations from Wangjiazhai section and Lipu-Sizhai section were analyzed.The magnetic foliation over magnetic lineation in both Wangjiazhai and Lipu-Sizhai sections together with the field observations indicated a compressional deformation pattern.3 and 4 strong ductile deformation zones can be established in the Wangjiazhai section and the Lipu-Sizhai section,respectively.According to the magnetic fabric and petro-fabric studies,the Northeastern Jiangshan-Shaoxing tectonic zone suffered two kinds of deformation patterns during the late early Paleozoic,i.e.,the thrusting deformation followed by sinistral shear deformation.GONG Genhui CHEN Hanlin WANG Fang LIN Xiubin MENG Lifeng 2016Acta Geologica Sinica(English Edition)2016,90,1:3
2Nanowire-assisted microcavity in a photonic crystal waveguide and the enabled high-efficiency optical frequency conversions显示文摘We report an indium phosphide nanowire(NW)-induced cavity in a silicon planar photonic crystal(PPC)waveguide to improve the light–NW coupling.The integration of NW shifts the transmission band of the PPC waveguide into the mode gap of the bare waveguide,which gives rise to a microcavity located on the NW section.Resonant modes with��factors exceeding 103 are obtained.Leveraging on the high density of the electric field in the microcavity,the light–NW interaction is enhanced strongly for efficient nonlinear frequency conversion.Second-harmonic generation and sum-frequency generation in the NW are realized with a continuous-wave pump laser in a power level of tens of microwatts,showing a cavity-enhancement factor of 112.The hybrid integration structure of NW-PPC waveguide and the self-formed microcavity not only opens a simple strategy to effectively enhance light–NW interactions,but also provides a compact platform to construct NW-based on-chip active devices.Linpeng Gu Liang Fang Qingchen Yuan Xuetao Gan Hao Yang Xutao Zhang Juntao Li Hanlin Fang Vladislav Khayrudinov Harri Lipsanen Zhipei Sun Jianlin Zhao 2020Photonics Research2020,8,11:0
3Major transgression during Late Cretaceous constrained by basin sediments in northern Africa: implication for global rise in sea level显示文摘Kaixuan AN Hanlin CHEN Xiubin LIN Fang WANG Shufeng YANG Zhixin WEN Zhaoming WANG Guangya ZHANG Xiaoguang TONG 2017Frontiers of Structural and Civil Engineering2017,11,4:0
4A novel formulation of bupivacaine-encapsulated PLGA nanoparticles in peripheral analgesia显示文摘Bupivacaine encapsulated poly(lactidecoglycolide)nanoparticles is a novel formulation of extended-release of bupivacaine in poly(lactidecoglycolide)matrix.We evaluated the efficacy and safety of bupivacaine nanoparticles in peripheral analgesia via behavior tests,electrophysiological recordings,pharmacokinetic analysis,and pathology staining by employing the models of uninjured rats and mice.Nanoparticles injection increased the pain thresholds of rats and mice for 21 days.Wang Tao Tang Keyun Fang Yehong Zhang Hanlin Ma Chao 2021解剖学杂志2021,44,S01:0
5Efficient energy transfer in organic light-emitting transistor with tunable wavelength显示文摘Key challenges in the development of organic light-emitting transistors(OLETs)are blocking both scientific research and practical applications of these devices,e.g.,the absence of high-mobility emissive organic semiconductor materials,low device efficiency,and color tunability.Here,we report a novel device configuration called the energy transfer organic light-emitting transistor(ET-OLET)that is intended to overcome these challenges.An organic fluorescent dye-doped polymethyl methacrylate(PMMA)layer is inserted below the conventional high-mobility organic semiconductor layer in a single-component OLET to separate the functions of the charge transport and light-emitting layers,thus making the challenge to essentially integrate the high mobility and emissive functions within a single organic semiconductor in a conventional OLET or multilayer OLET unnecessary.In this architecture,there is little change in mobility,but the external quantum efficiency(EQE)of the ET-OLET is more than six times that of the conventional OLET because of the efficient Förster resonance energy transfer,which avoids exciton-charge annihilation.In addition,the emission color can be tuned from blue to white to green-yellow using the sourcedrain and gate voltages.The proposed structure is promising for use with electrically pumped organic lasers.Ke Zhou Jian Tang Shaofan Fang Ke Jiang Fangxu Yang Deyang Ji Jing Xiang Jie Liu Huanli Dong(✉) Cheng Han Hanlin Hu Xiaotao Zhang Wenping Hu Yumeng Shi 2022Nano Research2022,15,4:0
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