1 |
Surface course in Rochow reaction: First-principle study Zhang ZW, Wang Q Applied Surface Science, 471, 462, 2019 |
2 |
ZnO supported on Cu2O{100} enhances charge transfer in dimethyldichlorosilane synthesis Li J, Ni ZB, Ji YJ, Zhu YX, Liu HZ, Zhang Y, Gong XQ, Zhong ZY, Su FB Journal of Catalysis, 374, 284, 2019 |
3 |
Impact of the Cu2O microcrystal planes on active phase formation in the Rochow reaction and an experimental and theoretical understanding of the reaction mechanism Li J, Yin LL, Ji YJ, Liu HZ, Zhang Y, Gong XQ, Zhong ZY, Su FB Journal of Catalysis, 361, 73, 2018 |
4 |
Methylchlorosilanes의 직접 생산 반응에서 반응기구 김종팔, 이광현 Korean Chemical Engineering Research, 56(2), 291, 2018 |
5 |
Hierarchical zinc-copper oxide hollow microspheres as active Rochow reaction catalysts: The formation and effect of charge transferable interfaces Zhang Y, Ji YJ, Li J, Liu HZ, Zhong ZY, Su FB Journal of Catalysis, 348, 233, 2017 |
6 |
Hierarchical zinc-copper oxide hollow microspheres as active Rochow reaction catalysts: The formation and effect of charge transferable interfaces Zhang Y, Ji YJ, Li J, Liu HZ, Zhong ZY, Su FB Journal of Catalysis, 348, 233, 2017 |
7 |
Facile patterning silicon wafer by Rochow reaction over patterned Cu-based catalysts Ren WF, Wang YH, Zhang ZL, Tan QQ, Zhong ZY, Su FB Applied Surface Science, 360, 192, 2016 |
8 |
Novel leaflike Cu-O-Sn nanosheets as highly efficient catalysts for the Rochow reaction Zou SY, Ji YJ, Li J, Zhang Y, Jin ZY, Jia LH, Guo XF, Zhong ZY, Su FB Journal of Catalysis, 337, 1, 2016 |
9 |
One-pot hydrothermal growth of raspberry-like CeO2 on CuO microsphere as copper-based catalyst for Rochow reaction Jin ZY, Li J, Shi LS, Ji YJ, Zhong ZY, Su FB Applied Surface Science, 359, 120, 2015 |
10 |
Solvothermal synthesis of copper (I) chloride microcrystals with different morphologies as copper-based catalysts for dimethyldichlorosilane synthesis Chen X, Jia LH, Wang YL, Song LY, Zhu YX, Liu WY, Zhong ZY, Su FB Journal of Colloid and Interface Science, 404, 16, 2013 |