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13篇 您的检索式:作者名="Flox C"
    题名 作者 年代 出处 被引量
1Applied Catalysis B: Environmental显示文摘Flox C Ammar S Arias C 200667 (1-2): 93-1042006,67,12:1
2Electro-fenton and photoelectro-fenton degradation of indigo carmine in acidic aqueous medium显示文摘Flox C Ammar S Arias C 2006Applied Catalysis B:Environmental2006,67,12:1
3Electro-fenton and photoeleetro-Fenton degradation of indigo carmine in acidic aqueous medium显示文摘Flox C Ammar S Arias C 2006Appl Catal B2006,67,:1
4Electro-Fenton and photoelectro-Fenton degradation of indigo carmine in acidic aqueous medium 显示文摘FLOX C AMMAR S ARIAS C 2006Applied Catalysis B: Environ- mental2006,67,:1
5Electro-Fenton and photoelectroFenton degradation of indigo carmine in acidic aqueous medium显示文摘FLOX C AMMAR S ARIAS C 2006Appl Catal B:Environ2006,67,:1
6Active nano-Cu Pt3electrocatalyst supported on graphene for enhancing reactions at the cathode in all-vanadium redox flow batteries显示文摘Flox C Rubio-Garcia J Nafria R Zamani R Skoumal M Andreu T Arbiol J Cabot A Morante J R 2012Carbon2012,50,:1
7Active nano-CuPt3 electrocatalyst supported on graphene for enhancing reactions at the cathode in all-vanadium redox flow batteries 显示文摘Flox C Rubio-Garcia J Nafria R 2012Carbon2012,50,:1
8Thermo-chemical treatments based on NH3/O2 for improved graphite-based fiber electrodes in vanadium redox flow batteries显示文摘Flox C Rubio-García J Skoumal M Andreu T Morante J R 2013Carbon2013,60,:1
9Electro-Fenton and photoelec- tro-Fenton degradation of indigo carmine in acidic aqueous medi- um显示文摘Flox C Ammar S Arias C 2006Applied Catalysis B:Environmental2006,67,:1
10Mineralization of herbicide mecoprop by photoelectro-Fenton with UVA and solar light显示文摘Flox C Garrido J A Rodriguez R M 2007Catalysis Today2007,129,:1
11Strategies for enhancing electrochemical activity of carbon-based electrodes for all vanadium redox flow batteries显示文摘Flox C Skoumal M Rubio-Garcia J 2013Applied Energy2013,109,:1
12Electro-Fenton and photoelectro-Fenton degradation of indigo carmine in acidic aqueous medium显示文摘Flox C Ammar S Arias C Brillas E 2006Appl Catal B: Environ2006,67,:1
13优化在金红石TiO_2纳米棒作为水解离的光阳极上表面电荷的传输过程显示文摘电化学阻抗谱(EIS)研究了二氧化钛纳米棒在水光电解系统中的光催化性能,提出双通道传输线模型诠释主要电荷转移过程的频率响应,过程在纳米棒/电解质和铂/电解质界面上产生。采用EIS来确定退火处理对光电流密度的有吸引力影响,起因于二氧化钛/电解质界面上只有很少电荷传输。X射线光电子谱和热重量分析法测量证明这与从TiO_2纳米棒合成过程存在氯有关。Fàbrega C Andreu T Tarancón A Flox C Morata A Calvo-Barrio L Morante J R 2013热处理技术与装备2013,34,6:0
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