1 |
Rapid preparation and photocatalytic properties of octahedral Cu2O@Cu powders Chang JY, Bao QW, Zhang C, Zhao XH, Cao ZS, Wang YA, Li RR, Guo RY, Li HY, He J, Pan P, Yang ZC, Wei J Advanced Powder Technology, 32(1), 144, 2021 |
2 |
Two-dimensional MOF-derived nanoporous Cu/Cu2O networks as catalytic membrane reactor for the continuous reduction of p-nitrophenol Bai XJ, Chen D, Li YN, Yang XM, Zhang MY, Wang TQ, Zhang XM, Zhang LY, Fu Y, Qi X, Qi W Journal of Membrane Science, 582, 30, 2019 |
3 |
Silver Nanoparticle Formation under Hydrothermal Conditions from Trisilver Citrate Yamamoto T, Suzuki T, Shishido M, Takesue M, Hata K KAGAKU KOGAKU RONBUNSHU, 45(2), 60, 2019 |
4 |
Effects of reaction parameters on the preparation of submicron Cu particles by liquid phase reduction method and the study of reaction mechanism Liu QM, Kazuaki N, Kensuke K, Masazumi O Powder Technology, 241, 98, 2013 |
5 |
액상환원공정을 이용한 황산코발트로부터의 코발트 나노분말 합성 안세환, 김세훈, 이진호, 홍현선, 김영도 Korean Journal of Materials Research, 21(6), 327, 2011 |
6 |
Synthesis, characterization and catalytic activity of an ultrafine Pd/C catalyst for formic acid electrooxidation Wang XM, Xia YY Electrochimica Acta, 54(28), 7525, 2009 |
7 |
Liquid-phase reductive deposition as a novel nanoparticle synthesis method and its application to supported noble metal catalyst preparation Sunagawa Y, Yamamoto K, Takahashi H, Muramatsu A Catalysis Today, 132(1-4), 81, 2008 |
8 |
Structural features and catalytic properties of Pt/CeO2 catalysts prepared by modified reduction-deposition techniques Tang XL, Zhang BC, Li Y, Xu YD, Xin Q, Shen WJ Catalysis Letters, 97(3-4), 163, 2004 |