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32篇 您的检索式:作者名="Subhra"
    题名 作者 年代 出处 被引量
1石墨片对环氧树脂的热学、力学和电学性能影响(英文)显示文摘采用溶液技术制备出膨胀石墨增强环氧树脂复合材料。对石墨进行化学改性以提高与环氧树脂的相容性。采用XRD、FE-SEM和HR-TEM对环氧树脂/膨胀石墨复合材料进行表征。与环氧树脂相比,添加质量分数9%膨胀石墨后,该复合材料的热分解温度从340℃升高至480℃,抗张应力提高30%,导电率由10-15增加至10-5数量级。热学、力学和电学性能的显著提高,主要归因于膨胀石墨纳米片在环氧树脂基体中的良好分散性,从而可用于广泛的应用领域。Subhra Gantayat Gyanaranjan Prusty Dibya Ranjan Rout Sarat K Swain 2015新型炭材料2015,30,5:7
2SJES14110700383743显示文摘Peter J. Murray Judith E. Allen Subhra K. Biswas Edward A. Fisher Derek W. Gilroy Sergij Goerdt Siamon Gordon John A. Hamilton Lionel B. Ivashkiv Toby Lawrence Massimo Locati Alberto Mantovani Fernando O. Martinez Jean-Louis Mege David M. Mosser Gioacchin 2014Immunity2014,,1:2
3Design and simulation of a novel GaN based resonant tunneling high electron mobility transistor on a silicon substrate显示文摘For the first time,we have introduced a novel GaN based resonant tunneling high electron mobility transistor(RTHEMT) on a silicon substrate.A monolithically integrated GaN based inverted high electron mobility transistor(HEMT) and a resonant tunneling diode(RTD) are designed and simulated using the ATLAS simulator and MATLAB in this study.The 10%Al composition in the barrier layer of the GaNbased RTD structure provides a peak-to-valley current ratio of 2.66 which controls the GaN based HEMT performance.Thus the results indicate an improvement in the current-voltage characteristics of the RTHEMT by controlling the gate voltage in this structure.The introduction of silicon as a substrate is a unique step taken by us for this type of RTHEMT structure.Subhra Chowdhury Swarnabha Chattaraj Dhrubes Biswas 2015Journal of Semiconductors2015,36,4:2
4Nanocellulose,a versatile platform:From the delivery of active molecules to tissue engineering applications显示文摘Nanocellulose,a biopolymer,has received wide attention from researchers owing to its superior physicochemical properties,such as high mechanical strength,low density,biodegradability,and biocompatibility.Nanocellulose can be extracted from wide range of sources,including plants,bacteria,and algae.Depending on the extraction process and dimensions(diameter and length),they are categorized into three main types:cellulose nanocrystals(CNCs),cellulose nanofibrils(CNFs),and bacterial nanocellulose(BNC).CNCs are a highly crystalline and needle-like structure,whereas CNFs have both amorphous and crystalline regions in their network.BNC is the purest form of nanocellulose.The nanocellulose properties can be tuned by chemical functionalization,which increases its applicability in biomedical applications.This review highlights the fabrication of different surface-modified nanocellulose to deliver active molecules,such as drugs,proteins,and plasmids.Nanocellulose-mediated delivery of active molecules is profoundly affected by its topographical structure and the interaction between the loaded molecules and nanocellulose.The applications of nanocellulose and its composites in tissue engineering have been discussed.Finally,the review is concluded with further opportunities and challenges in nanocellulose-mediated delivery of active molecules.Tejal V.Patil Dinesh K.Patel Sayan Deb Dutta Keya Ganguly Tuhin Subhra Santra Ki-Taek Lim 2022Bioactive Materials2022,7,3:2
5Soluble hyaluronan receptor RHAMM induces mitotic arrest by suppressing Cdc2 and cyclin B1 expression显示文摘 YANG X W JIM A 1996J Exp Med1996,183,4:1
6Tumor promotion by tumor-associated macrophages显示文摘Porta C Subhra Kumar B Larghi P 2007Adv Exp Med Biol2007,604,:1
7miRNA-548c: A specific signature in circulating PBMCs from dilated cardiomyopathy patients显示文摘Manveen K. Gupta Carmel Halley Zhong-Hui Duan Jason Lappe Jamie Viterna Subhra Jana Katarzyna Augoff Maradumane L. Mohan Neelakantan T. Vasudevan Jie Na Khalid Sossey-Alaoui Xiuping Liu Chang-gong Liu W.H. Wilson Tang Sathyamangla V. Naga Prasad 2013Journal of Molecular and Cellular Cardiology2013,,:1
8Tumor pro- motion by tumor-associated macrophages 显示文摘PORTA C SUBHRA KUMAR B LARGHI P 2007Adv Exp Med Biol2007,604,:1
9Plasticity of macrophage function during tumor progression: Regulation by distinct molecular mechanisms显示文摘Subhra K B Antonio S Claire E L 2008The Journal of Immunology2008,180,4:1
10Macrophage plasticity and polarization in tissue repair and remodelling显示文摘Alberto Mantovani Subhra K Biswas Maria Rosaria Galdiero Antonio Sica Massimo Locati 2012J. Pathol2012,,:1
11Reversible Image Watermarking through Coordinate Logic Operation Based Prediction 显示文摘Ruchira Naskar Rajat Subhra Chakraborty 2011Computer Science2011,7093,:1
12Macrophage polarization and plasticity in health and disease显示文摘Subhra K. Biswas Manesh Chittezhath Irina N. Shalova Jyue-Yuan Lim 2012Immunologic Research2012,,:1
13Reg- ulation of cell cycle and stress responses under nitrosative stress in Schizosaccharomyces pombe 显示文摘Majumdar U Biswas P Subhra Sarkm- T Maiti D Ghosh S 2012Free Radic Biol Med2012,52,12:1
14Tumor pro- motion by tumor-associated macrophages 显示文摘PORTA C SUBHRA KUMAR B LARGHI P 2007Adv Exp Med Biol2007,604,:1
15Endotoxin tolerance: new mechanisms, molecules and clinical significance显示文摘Subhra K. Biswas Eduardo Lopez-Collazo 2009Trends in Immunology2009,,10:1
16Tumor promotion by tumor-associated macrophages显示文摘Porta C Subhra Kumar B Larghi P 0,,:1
17Antiapoptotic efficacy of folic acid and vitamin Bl2 against arsenic-induced toxicity显示文摘Majumdav S Maiti A Subhra K 2012En- viron Toxicol2012,27,6:1
18A Time Since Re- covery Model with Varying Rates of Loss of Immunity显示文摘SUBHRA Bhattacharya FREDERICK R Adler 2012Society for Mathematical Biology2012,10,7:1
19Tumor promotion by tumor- associated macrophages显示文摘Porta C Subhra Kumar B Larghi P 2007Adv Exp Med Biol2007,604,:1
20Characterizing the surface charge of synthetic nanomembranes by the streaming potential method显示文摘Subhra Datta A.T. Conlisk Dharmesh M. Kanani Andrew L. Zydney William H. Fissell Shuvo Roy 2010Journal of Colloid And Interface Science2010,,1:1
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