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130篇 您的检索式:作者名="Kuila"
    题名 作者 年代 出处 被引量
1亲水型功能化石墨烯的分散性及其对水泥基复合材料力学性能的影响显示文摘为了解决石墨烯纳米片在水泥基体中的分散问题,采用芳基重氮盐(F)对氧化石墨烯(GO)进行改性,制备了一种新型亲水型功能化石墨烯(FG)。结果表明,FG在水溶剂中最大的分散浓度能够达到2.1 mg/mL。FTIR、拉曼光谱和XPS结果表明F成功对石墨烯进行了表面改性。对比纯水泥基体材料,本文所制备的亲水型FG/水泥复合材料的28天抗折强度和抗压强度相对提高了95.3%和78.3%。F对GO进行改性,实现了石墨烯在水泥基材料中的均匀分散及对其力学性能的提升。余东升 付芳 贾铁昆 李继利 TAPAS Kuila 骆雪 田新生 张慧军 周加左 刘君梦 龙巍云 陈欢 2021复合材料学报2021,38,2:4
2An account of the strategies to enhance the water splitting efficiency of noble-metal-free electrocatalysts显示文摘The electrolysis of water for hydrogen generation has shown immense promise as an energy conversion technology for the green energy economy.Two concurrently occurring electrochemical reactions in water electrolysis(hydrogen and oxygen evolution reactions)are sluggish in nature and therefore the employment of electrocatalysts is highly essential.Noble-metal-based electrocatalysts(Pt,Ru O_(2),Ir O_(2),etc.)have shown superior activity towards these reactions.However,their lower natural abundance and inferior stability make the cost to performance ratio of water electrolysis too high.Thus,huge amount of research efforts are being carried out to develop electrocatalysts consisting of earth abundant elements(transition metals,carbon etc.)as the replacement of these noble-metal-based materials.Transition metal compounds,carbonaceous and hybrid materials have shown promise as efficient electrocatalysts but there is still huge gap between the activities of these materials and the noble-metal-based electrocatalysts.Several strategies like morphology modulation,elemental doping,defect engineering etc.are being deployed to enhance the activity of these noble-metal-free electrocatalysts.This review summarizes these strategies and thoroughly discusses the reason behind the changes in activity of the electrocatalysts owing to these modifications.Finally,the remaining research gaps and future prospects in this field are also discussed in detail.Subhasis Shit Saikat Bolar Naresh Chandra Murmu Tapas Kuila 2021Journal of Energy Chemistry2021,30,8:3
3Structural, microstructural, and thermal characterizations of a chalcopyrite concentrate from the Singhbhum shear zone, India显示文摘The structural and morphological characterizations of a chalcopyrite concentrate, collected from the Indian Copper Complex, Ghatshila, India, were carried out by X-ray diffraction, scanning electron microscopy, and energy-dispersive X-ray spectroscopy. The concentrate powder was composed mainly of free chalcopyrite and low quartz in about 3:1 weight ratio. The particle size was about 100 μm. Spectroscopic studies(FTIR, Raman, UV-visible) of the concentrate supported the XRD findings, and also revealed a marginal oxidation of the sulfide phase. The energy band gap of the sulfide was found to be 3.4 eV. Differential thermal analysis and thermogravimetry of the concentrate showed a decomposition of chalcopyrite at 658 K with an activation energy of 208 kJ ·mol-1, and two successive structural changes of silica at 848 K and 1145 K.Ritayan Chatterjee Shamik Chaudhuri Saikat Kumar Kuila Dinabandhu Ghosh 2015International Journal of Minerals,Metallurgy and Materials2015,22,3:2
4Effects of covalent surface modifications on the electrical and electrochemical properties of graphene using sodium 4-aminoazobenzene-4'-sulfonate 显示文摘Yu D S Kuila T Kim N H 2013Carbon2013,54,:1
5A Novel Evolutionary Approach for Load Balanced Clustering Problem for Wireless Sensor Networks显示文摘Kuila P Gupta S K Jana P K 2013Swarm and Evolutionary Computation2013,24,12:1
6Systematic choice of crosslinker and filler for pervaporation membrane: A case study with dehydration of isopropyl alcohol–water mixtures by polyvinyl alcohol membranes显示文摘Paramita Das S.K. Ray S.B. Kuila H.S. Samanta N.R. Singha 2011Separation and Purification Technology2011,,2:1
7显示文摘Kuila B K Malik S BatabyaI S K 2006Macromolecules2006,40,2:1
8Micro-crack Behavior of Carbon Fiber Reinforced Thermoplastic Modified Epoxy Composites for Cryogenic Applications显示文摘He Y X Li Q Kuila T 2013Composites Part B Engineering2013,44,1:1
9Polymer membranes for high temperature proton exchange membrane fuel cell: Recent ad- vances and challenges显示文摘Bose S Kuila T Nguyen T X H 2011Prog Polym Sci2011,36,6:1
10Chemical func- tionalization of graphene and its applications 显示文摘KUILA T BOSE S MISHRA A K 2012Progress in Materials Science2012,57,7:1
11Simultaneous reduction,functionalization and stitching of graphene oxide with ethylenediamine for composites application显示文摘Kim N H Kuila T Lee J H 2013Journal of Materials Chemistry A2013,1,4:1
12Electrochemical performance of a graphene-polypyrrole nanoeomposite as a supercapaeitor electrode 显示文摘BOSE S KIM N H KUILA T 2011Nanoteehnology2011,22,36:1
13Preparation of Punction-alized Graphene/Linear Low Density Polyethylene Com-posites by a Solution Mixing Method 显示文摘Kuila T Bose S Hong C E 2011Carbon2011,49,3:1
14Polymer membranes for high temperature proton exchange membrane fuel cell: Recent advances and challenges显示文摘BOSE S KUILA T NGUYEN T X H 2011Progress in Polymer Science2011,36,:1
15Chemical functionaliza- tion of graphene and its applieations显示文摘Kuila T Bose S Mishra A K 2012Progress in Mate- rims Science2012,57,7:1
16Recent advances in graphene-based biosensors 显示文摘Kuila T Bose S Mishra A K 2012Prog Mater Sci2012,57,7:1
17Carbon-based nanostructured materials and their composites as supercapacitor electrodes 显示文摘BOSE S KUILA T MISHRA A K 2012J Mater Chem2012,22,3:1
18Specific surface area and pore‐size distribution in clays and shales显示文摘Utpalendu Kuila Manika Prasad 2013Geophysical Prospecting2013,,2:1
19Chemical funetionalization of gmphene and its applications 显示文摘Kuila T Bose S Mishra A K 2012Progress in Materials Science2012,57,:1
20Recent advances in graphene- based biosensors显示文摘Kuila T Bose S Khanra P 2011Biosens Bioeleetron2011,26,12:1
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