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9篇 您的检索式:作者名="Libing Bai"
    题名 作者 年代 出处 被引量
1Conjugated Polymer Nanomaterials for Phototherapy of Cancer显示文摘Due to the excellent properties including high specificity,low side-effect and good biocompatibility,conjugated polymer nanomaterials have been served as efficient anticancer reagents in die past decades.According to the developed anticancer systems based on conjugated polymer nanomaterials,it could be summarized into three main cancer therapy strategies:photodynamic therapy(PDT),photothermal therapy(PTT)and combination therapy.In this mini review,we provide a brief introduction to three different cancer therapy modes,their mechanisms and potential biological applications.Furthermore,some perspectives on the further development of conjugated polymer nanomaterials are proposed in the territory of anticancer precision medicine.FU Xuancheng BAI Haotian LYU Fengting LIU Libing WANG Shu 2020Chemical Research in Chinese Universities2020,36,2:2
2Enhanced laser-based magneto-optic imaging system for nondestructive evaluation applications显示文摘CHENG Yuhua DENG Yiming BAI Libing 2013IEEE Transactions on Instrumentation and Measurement2013,62,5:1
3Enhanced laser-based magneHptit image system tr nondestnwtive evaluation ap- p|ications显示文摘Cheng Yuhua Deng Yiming Bai Libing 2015IEEE Transactions on Instrumentation and Measure- merit2015,62,5:1
4Reaearch on High Precision and Non-contact Measuring System for Geometric Parameter of Irregular Shape 显示文摘CHENG Yuhua BAI Libing NIE Lin 2012Applied Mechanics and Materials(S1662-7482)2012,,:1
5Stretchable organic electrochemical transistors via threedimensional porous elastic semiconducting films for artificial synaptic applications显示文摘Neuromorphic computing targets realizing biomimetic or intelligence systems capable of processing abundant tasks in parallel analogously to our brain,and organic electrochemical transistors(OECTs)that rely on the mixed ionic-electronic synergistic couple possess significant similarity to biological systems for implementing synaptic functions.However,the lack of reliable stretchability for synaptic OECTs,where mechanical deformation occurs,leads to consequent degradation of electrical performance.Herein,we demonstrate stretchable synaptic OECTs by adopting a three-dimensional poly(3-hexylthiophene)(P3HT)/styrene-ethylene-butylene-styrene(SEBS)blend porous elastic film for neuromorphic computing.Such architecture shows the full capability to emulate biological synaptic behaviors.Adjusting the accumulated layer numbers of porous film enables tunable OECT output and hysteresis,resulting in transition in plasticity.Especially,with a trilayer porous film,large-scale conductance and hysteresis are endorsed for efficient mimicking of memory-dependent synapse behavior.Benefitted from the interconnected three-dimensional porous structures,corresponding stretchable synaptic OECTs exhibit excellent mechanical robustness when stretched at a 30%strain,and maintain reliable electrical characteristics after 500 stretching cycles.Furthermore,near-ideal weight updates with near-zero nonlinearities,symmetricity in long-term potentiation(LTP)and depression,and applications for image simulation are validated.This work paves a universal design strategy toward highperformance stretchable neuromorphic computing architecture and could be extended to other flexible/stretchable electronics.Yujie Peng Lin Gao Changjian Liu Jinyi Deng Miao Xie Libing Bai Gang Wang Yuhua Cheng Wei Huang Junsheng Yu 2023Nano Research2023,16,7:1
6Enhanced laser-based magneto-optic image system for nondestructive evaluation applications显示文摘Cheng Yuhua Deng Yiming Bai Libing eta! 2013IEEE Transactions on instrumen- tation and measurement2013,62,5:1
7Auto- matic Defect Identification of Eddy Current Pulsed Thermography Using Single Channel Blind Source Separation显示文摘Gao Bin Bai Libing Woo Wai Lok 2014Instrumentation and Measurement2014,63,4:1
8Automatic defect identification of eddy current pulsed thermography using single channel blind source separation 显示文摘Gao Bin Bai Libing Woo W L 2014IEEE Transactions on Instrumentation and Measurement2014,63,4:1
9Effect of solidification temperature range on the dendritic growth mode显示文摘Electromagnetic levitation technique was used to undercool bulk samples of Co-20% Cu and Co-60% Cu alloys and high undercoolings up to 303 and 110 K were achieved,respectively.The dendritic growth velocities were measured as a function of undercooling.The dendrite growth velocity of the Co-20% Cu alloy was much higher than that of the Co-60% Cu alloy.The experimental data were analyzed on the basis of the LKT/BCT dendritic growth model by taking into account non-equilibrium interface kinetics.It has been revealed that a transition from solute diffusion controlled dendritic growth to thermal diffusion controlled dendritic growth occurs at an undercooling of about 66 K for the Co-20% Cu alloy,whereas the dendrite growth in Co-60% Cu alloy proceeds in a solute diffusion controlled mode within a large solidification temperature range,and the solutal undercooling plays a dominant role.It is thus deduced that certain distinct solidification temperature ranges may be responsible for the different solidification modes for the two alloys.CAO ChongDe WANG Fang DUAN LiBing BAI XiaoJun 2011Science China(Physics,Mechanics & Astronomy)2011,54,1:0
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