화학공학소재연구정보센터
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No. Article
1 A correlation story of syntheses of ZnO and their influence on photocatalysis
Payra S, Ganeshan SK, Challagulla S, Roy S
Advanced Powder Technology, 31(2), 510, 2020
2 Fe3O4@Cu/C and Fe3O4@CuO Composites Derived from Magnetic Metal-Organic Frameworks Fe3O4@HKUST-1 with Improved Peroxidase-Like Catalytic Activity
Huang YF, Zhang L, Ma L, Li Y, Zhong CL
Catalysis Letters, 150(3), 815, 2020
3 Hydrothermal synthesis of Ag2CO3-TiO2 loaded reduced graphene oxide nanocomposites with highly efficient photocatalytic activity
Pant B, Park M, Park SJ
Chemical Engineering Communications, 207(5), 688, 2020
4 Ultrasonic enhanced adsorption of methylene blue onto the optimized surface area of activated carbon: Adsorption isotherm, kinetics and thermodynamics
Egbosiuba TC, Abdulkareem AS, Kovo AS, Afolabi EA, Tijani JO, Auta M, Roos WD
Chemical Engineering Research & Design, 153, 315, 2020
5 란탄족 이온이 도핑된 Ti-SBA-15의 합성 및 그들의 광촉매 활성
홍성수
Clean Technology, 26(1), 7, 2020
6 Methylene blue functionalized graphene as binder-free electrode for high-performance solid state supercapacitors
Deng LJ, Zhou CH, Ma ZY, Fan G
Journal of Colloid and Interface Science, 561, 416, 2020
7 Silver-doped ZnO for photocatalytic degradation of methylene blue
Kwon DY, Kim JS
Korean Journal of Chemical Engineering, 37(7), 1226, 2020
8 High adsorption of methylene blue by activated carbon prepared from phosphoric acid treated eucalyptus residue
Han QN, Wang J, Goodman BA, Xie JK, Liu ZG
Powder Technology, 366, 239, 2020
9 Activation of kaolinite by a low-temperature chemical method and its effect on methylene blue adsorption
Asuha S, Fei F, Wurendaodi W, Zhao S, Wu H, Zhuang X
Powder Technology, 361, 624, 2020
10 Effects of calcination temperature on organic functional groups of TiO2 and the adsorption performance of the TiO2 for methylene blue
Feng JT, Liu YP, Zhang L, Zhu JW, Chen J, Xu H, Yang HH, Yan W
Separation Science and Technology, 55(4), 672, 2020