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10篇 您的检索式:作者名="Bingyang GUO"
    题名 作者 年代 出处 被引量
1Entransy and entropy revisited显示文摘Entransy, a recently developed concept, is the central physical quantity characterizing heat transfer processes not related to heat-to-work conversions. The entransy of an object pertains to the nature of the potential energy of heat in a thermal field and describes its heat transfer ability. In the present study, we revisit this concept, and develop its relationship to state and process quantities. This then enables a direct comparison to the more familiar concept, entropy, the central physical quantity in thermody- namics. The comparison helps to identify the role entransy has in heat transfer processes and highlight under what conditions state and process quantities related to entransy can be distinguished in such processes. As to embody the entransy loss due to work expended between the system and its environment for the irreversible heat conduction in gases, new quantities, available entransy flow and available system entransy are introduced. Both the entransy of solids and the available system entransy of gases are state quantities and their changes correspond to the entransy flow and the available entransy flow respectively. Thus there is no need to stress the difference between process quantity and state quantity in heat transfer.HU GuoJie CAO BingYang GUO ZengYuan 2011Chinese Science Bulletin2011,56,27:13
2Nanoparticle–Cartilage Interaction: Pathology-Based Intra-articular Drug Delivery for Osteoarthritis Therapy显示文摘Osteoarthritis is the most prevalent chronic and debilitating joint disease,resulting in huge medical and socioeconomic burdens.Intra-articular administration of agents is clinically used for pain management.However,the effectiveness is inapparent caused by the rapid clearance of agents.To overcome this issue,nanoparticles as delivery systems hold considerable promise for local control of the pharmacokinetics of therapeutic agents.Given the therapeutic programs are inseparable from pathological progress of osteoarthritis,an ideal delivery system should allow the release of therapeutic agents upon specific features of disorders.In this review,we firstly introduce the pathological features of osteoarthritis and the design concept for accurate localization within cartilage for sustained drug release.Then,we review the interactions of nanoparticles with cartilage microenvironment and the rational design.Furthermore,we highlight advances in the therapeutic schemes according to the pathology signals.Finally,armed with an updated understanding of the pathological mechanisms,we place an emphasis on the development of“smart”bioresponsive and multiple modality nanoparticles on the near horizon to interact with the pathological signals.We anticipate that the exploration of nanoparticles by balancing the efficacy,safety,and complexity will lay down a solid foundation tangible for clinical translation.Xu Li Bingyang Dai Jiaxin Guo Lizhen Zheng Quanyi Guo Jiang Peng Jiankun Xu Ling Qin 2021Nano-Micro Letters2021,13,10:5
3Equation of Motion of a Phonon Gas and Non-Fourier Heat Conduction 显示文摘CAO Bingyang GUO Zengyuan 2007Jour- nal of Applied Physics2007,102,05:1
4Equation of Motion of a Phonon Gas and Non-Fourier Heat Conduction 显示文摘CAO Bingyang GUO Zengyuan 2007J Appl Phys2007,102,05:1
5Effect of surface roughness on gas flow in microchannels by molecular dynamics simulation 显示文摘Cao Bingyang Chen Min Guo Zengyuan 2006International Journal of Engineering Science2006,44,1314:1
6Effect of Surface Roughness on Gas Flow in Microchannels by Molecular Dynamics Simulation 显示文摘CAO Bingyang CHEN Min GUO Zengyuan 2006International Journal of Engineering Science2006,44,92:1
7Recent research progress of master mold manufacturing by nanoimprint technique for the novel microoptics devices显示文摘The consumer demand for emerging technologies such as augmented reality(AR),autopilot,and three-dimensional(3D)internet has rapidly promoted the application of novel optical display devices in innovative industries.However,the micro/nanomanufacturing of high-resolution optical display devices is the primary issue restricting their development.The manufacturing technology of micro/nanostructures,methods of display mechanisms,display materials,and mass production of display devices are major technical obstacles.To comprehensively understand the latest state-of-the-art and trigger new technological breakthroughs,this study reviews the recent research progress of master molds produced using nanoimprint technology for new optical devices,particularly AR glasses,new-generation light-emitting diode car lighting,and naked-eye 3D display mechanisms,and their manufacturing techniques of master molds.The focus is on the relationships among the manufacturing process,microstructure,and display of a new optical device.Nanoimprint master molds are reviewed for the manufacturing and application of new optical devices,and the challenges and prospects of the new optical device diffraction grating nanoimprint technology are discussed.Yuhang LIU Jianjun LIN Zuohuan HU Guoli GAO Bingyang WANG Liuyi WANG Zhiyuan PAN Jianfei JIA Qinwei YIN Dengji GUO Xujin WANG 2022Frontiers of Materials Science2022,16,3:0
8Large-area gold nanohole arrays fabricated by one-step method for surface plasmon resonance biochemical sensing显示文摘Surface plasmon resonance(SPR) nanosensors based on metallic nanohole arrays have been widely reported to detect binding interactions in biological specimens. A simple and effective method for constructing nanoscale arrays is essential for the development of SPR nanosensors. In this work, we report a one-step method to fabricate nanohole arrays by thermal nanoimprinting in the matrix of IPS(Intermediate Polymer Stamp). No additional etching process or supporting substrate is required. The preparation process is simple, time-saving and compatible for roll-to-roll process, potentially allowing mass production. Moreover, the nanohole arrays were integrated into detection platform as SPR sensors to investigate different types of biological binding interactions. The results demonstrate that our one-step method can be used to efficiently fabricate large-area and uniform nanohole arrays for biochemical sensing.Huijie Qi Lihong Niu Jie Zhang Jian Chen Shujie Wang Jingjing Yang Siyi Guo Tom Lawson Bingyang Shi Chunpeng Song 2018Science China(Life Sciences)2018,61,4:0
9Application of Thin Layer Chromatography in Preparation of Drug Containing Serum of Eucalyptus Oil显示文摘[Objectives] To explore whether the thin layer chromatography( TLC) can be used to guide the preparation of drug containing serum of eucalyptus oil. [Methods]Eucalyptus oil samples with different dilution ratio were detected by TLC. Eucalyptus oil was intragastrically administered to mice,serum samples of different eucalyptus oil doses,different intragastric administration methods and different blood sampling times were collected. The above samples were detected by TLC,and the above results were verified by gas chromatography. [Results] TLC can detect concentration difference of eucalyptus oil samples with different dilution ratio. TLC can provide qualitative and semi-quantitative detection of eucalyptus oil in serum. High,medium and low dose of eucalyptus oil in serum had different effects on the growth of MCF-7 cells in the SD rats( P < 0. 05). [Conclusions] TLC can be used to guide the preparation of drug containing serum of eucalyptus oil.Bingyang GUO Yongli YU Shijuan LUO Xiaoqing YIN Mingzhen XU 2018Medicinal Plant2018,9,1:0
10Rendering discrete participating media using geometrical optics approximation显示文摘We consider the scattering of light in participating media composed of sparsely and randomly distributed discrete particles.The particle size is expected to range from the scale of the wavelength to several orders of magnitude greater,resulting in an appearance with distinct graininess as opposed to the smooth appearance of continuous media.One fundamental issue in the physically-based synthesis of such appearance is to determine the necessary optical properties in every local region.Since these properties vary spatially,we resort to geometrical optics approximation(GOA),a highly efficient alternative to rigorous Lorenz–Mie theory,to quantitatively represent the scattering of a single particle.This enables us to quickly compute bulk optical properties for any particle size distribution.We then use a practical Monte Carlo rendering solution to solve energy transfer in the discrete participating media.Our proposed framework is the first to simulate a wide range of discrete participating media with different levels of graininess,converging to the continuous media case as the particle concentration increases.Jie Guo Bingyang Hu Yanjun Chen Yuanqi Li Yanwen Guo Ling-Qi Yan 2022Computational Visual Media2022,8,3:0
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