화학공학소재연구정보센터
검색결과 : 17건
No. Article
1 Estimation of electrochemical charge storage capability of ZnO/CuO/reduced graphene oxide nanocomposites
Asgar H, Deen KM, Haider W
International Journal of Energy Research, 44(3), 1580, 2020
2 Cu-MOF@Co-MOF derived Co-Cu alloy nanoparticles and N atoms co-doped carbon matrix as efficient catalyst for enhanced oxygen reduction
Zhou Y, Tang B, Wang SK, Long JL
International Journal of Hydrogen Energy, 45(32), 15785, 2020
3 COSMO-RS based ionic liquid screening for the separation of acetonitrile and ethanol azeotropic mixture
Zhang ZG, Lu RZ, Zhang QQ, Chen JL, Li WX
Journal of Chemical Technology and Biotechnology, 95(4), 1191, 2020
4 RGO modified mediator free paper for electrochemical biosensing platform
Dave K, Pachauri N, Dinda A, Solanki PR
Applied Surface Science, 463, 587, 2019
5 Ultrasonic chemical synthesis of CdS-reduced graphene xide nanocomposites with an enhanced visible light photoactivity
Lin YC, Tsai DC, Chang ZC, Shieu FS
Applied Surface Science, 440, 1227, 2018
6 Reducing viscosity to promote biodiesel for energy security and improve combustion efficiency
Du E, Cai L, Huang K, Tang H, Xu X, Tao R
Fuel, 211, 194, 2018
7 Nickel phthalocyanine integrated graphene architecture as bifunctional electrocatalyst for CO2 and O-2 reductions
Sonkar PK, Ganesan V, Gupta R, Yadav DK, Yadav M
Journal of Electroanalytical Chemistry, 826, 1, 2018
8 Waste Management Pinch Analysis (WAMPA): Application of Pinch Analysis for greenhouse gas (GHG) emission reduction in municipal solid waste management
Ho WS, Hashim H, Lim JS, Lee CT, Sam KC, Tan ST
Applied Energy, 185, 1481, 2017
9 Facile synthesis of Co(OH)(2) magnetic nanoflake deposited on reduced graphene oxide nanoflake as an efficient bi-functional electrocatalyst for oxygen evolution/reduction reactions in alkaline media
Rezaei B, Jahromi ART, Ensafi AA
Journal of Electroanalytical Chemistry, 805, 11, 2017
10 Role of interlayer spacing and functional group on the hydrogen storage properties of graphene oxide and reduced graphene oxide
Rajaura RS, Srivastava S, Sharma V, Sharma PK, Lal C, Singh M, Palsania HS, Vijay YK
International Journal of Hydrogen Energy, 41(22), 9454, 2016