维普中文期刊产品整合服务
15篇 您的检索式:作者名="Tapati"
    题名 作者 年代 出处 被引量
1Purification of polygalacturonase from A. awamori Nakazawa MTCC 6652 and its application in apple juice clarification显示文摘Tapati Bhanja Dey Sunita Adak Patrali Bhattacharya Rintu Banerjee 2014LWT - Food Science and Technology2014,,:1
2Variation in species assemblages due to micro-topography and flow regime govern vegetation carbon stock in seasonal floodplain wetlands显示文摘Hypothesis:Variation in species assemblages due to micro-topographic features and flow regime determine vegetation carbon stock in floodplain wetlands.Material and method:We tested this hypothesis in Chatla—a tropical floodplain wetland located in northeast India.Five sampling stations characterized by contrasting micro-topographic and flow parameters were selected in the wetland for study.Species composition,assemblage pattern,and vegetation carbon stock were studied in these stations during three flood phases,i.e.,early,middle,and late flood phases following standard methods.Univariate and multivariate statistics were used to determine the relationship between the selected environmental parameters,plant species assemblages,and vegetation carbon stock of the wetland.Results:Thirty-one species of herbs and five species of shrubs were recorded from the five stations in Chatla floodplain wetland.Flow regime characterized by water flow velocity and discharge showed substantial variations across the stations.These parameters in turn are related to variations in the micro-topographic characteristics namely depth,width,and cross-sectional area of the stations.Plant species composition and abundance differed significantly with respect to micro-topography and flow regime as revealed by the cluster diagram.The canonical correspondence analysis revealed strong association of plant species assemblages with the micro-topography and flow regime within the wetland.Multiple regression analysis revealed a significant positive relationship of the vegetation carbon stock with the water discharge.Conclusions:Spatial variation in plant species diversity because of micro-topography and flow regime determines the vegetation carbon stock in floodplain wetlands.Modification of these parameters by anthropogenic activities such as mining and quarrying may potentially influence the carbon stocking potential of seasonal floodplain wetlands.Therefore,appropriate measures should be taken to maintain the integrity of the natural topographic features of such wetlands.Priyanka Sarkar Tapati Das Dibyendu Adhikari 2019Ecological Processes2019,8,1:1
3Degradation studies of transparent conducting oxide: a suhstratc for microcrystalline silicon thin film solar cells显示文摘Rajesh Das Tapati Jana Swafi Ray 2005Solar Energy Materials & Solar Cells2005,86,:1
4Degradation Studies of Transparent Conducting Oxide:A Substrate for Mierocrystalline Silicon Thin Film Solar cells显示文摘Des Rajesh Jann Tapati Ray Swati 2005Solar Energy Materials and Solar Cells2005,86,2:1
5Degradation studies of transparent conducting oxide:a substrate for microcrystalline silicon thin film solar cells显示文摘Rajesh Das Tapati Jana Swati 2005Sol Energy Mater Sol Cells2005,86,:1
6Degradation studies of transparent conducting oxide:a substrate for microcrystalline silicon thin film solar cells显示文摘 Tapati Jana Swati Ray 2005Solar Energy Materials & Solar Cells2005,86,:1
7Degradation studies of transparent conducting oxide:a substrate for microcrystalline silicon thin film solar cells显示文摘 Tapati Jana Swati Ray 2005Solar Energy Materials & Solar Cells2005,86,:1
8The Gli1gens as the molecular switch in disrupting hedgehog signaling in colon cancer显示文摘TAPATI M JENNIFER D AKWASI A 2011Oncotarget2011,2,:1
9Degradation studies of transparent conducting oxide: a substrate for microcrystalline silicon thin solar ceils 显示文摘Rajesh Tapati Jana Swati Ray 2005Solar Energy Materials & Solar Cells2005,86,:1
10Oxidant,Mitochondria and Calcium: An Overview 显示文摘 Sudip D Malay M 1999CellSignal1999,11,2:1
11Degradation studies of transparent conducting oxide:a substrate for microcrystalline silicon thin solar cells 显示文摘Rajesh Tapati Jana Swati Ray 2005Solar En- ergy Materials & Solar Cells2005,86,:1
12显示文摘Rajesh Das Tapati Jana Swati Ray 2005Solar Energy Materials & Solar Cells2005,86,:1
13μ-Calpain mediated cleavage of the Na + /Ca 2+ exchanger in isolated mitochondria under A23187 induced Ca 2+ stimulation显示文摘Pulak Kar Tapati Chakraborti Krishna Samanta Sajal Chakraborti 2008Archives of Biochemistry and Biophysics2008,,1:1
14Clinical implications of matrix metalloproteinases显示文摘Malay Mandal Amritlal Mandal Sudip Das Tapati Chakraborti Sajal Chakraborti 2003Molecular and Cellular Biochemistry2003,,1:1
15High current limits in chemical vapor deposited graphene spintronic devices显示文摘Understanding the stability and current-carrying capacity of graphene spintronic devices is key to their applications in graphene channel-based spin current sensors,spin-torque oscillators,and potential spin-integrated circuits.However,despite the demonstrated high current densities in exfoliated graphene,the current-carrying capacity of large-scale chemical vapor deposited(CVD)graphene is not established.Particularly,the grainy nature of chemical vapor deposited graphene and the presence of a tunnel barrier in CVD graphene spin devices pose questions about the stability of high current electrical spin injection.In this work,we observe that despite structural imperfections,CVD graphene sustains remarkably highest currents of 5.2×10^(8)A/cm^(2),up to two orders higher than previously reported values in multilayer CVD graphene,with the capacity primarily dependent upon the sheet resistance of graphene.Furthermore,we notice a reversible regime,up to which CVD graphene can be operated without degradation with operating currents as high as 108 A/cm^(2),significantly high and durable over long time of operation with spin valve signals observed up to such high current densities.At the same time,the tunnel barrier resistance can be modified by the application of high currents.Our results demonstrate the robustness of large-scale CVD graphene and bring fresh insights for engineering and harnessing pure spin currents for innovative device applications.Daria Belotcerkovtceva J.Panda M.Ramu Tapati Sarkar Ulrich Noumbe M.Venkata Kamalakar 2023Nano Research2023,16,4:0
返回顶部 每页显示:
共1页 首页 上一页 第1页 下一页 末页 /1 跳转

网站首页 | 关于我们 | 联系我们 | 产品服务 | 客服中心 | 广告服务 | 版权声明 | 网站联盟 | 友情链接 | 售卡网点

版权所有© 渝B2-20050021-1 渝公网安备 50019002500403号 违法和不良信息举报中心

互联网出版许可证 新出网证(渝)字10号 全国400电话 - 免长途话费