Browse By Person: Yang, Dongjiang
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Number of items: 8.
Zheng, Zhanfeng, Chen, Chao , Bo, Arixin, Zavahir, Fathima Sifani, Waclawik, Eric R., Zhao, Jian, et al. (2014) Visible-light-induced selective photocatalytic oxidation of benzylamine into imine over supported Ag/AgI photocatalysts. ChemCatChem, 6(5), pp. 1210-1214.
Sarina, Sarina, Bo, Arixin, Liu, Dejun, Liu, Hongwei, Yang, Dongjiang, Zhou, Cuifeng (Sunny), et al. (2014) Separate or simultaneous removal of radioactive cations and anions from water by layered sodium vanadate-based sorbents. Chemistry of Materials, 26(16), pp. 4788-4795.
Zheng, Zhanfeng, Zhao, Jian, Yuan, Yong, Liu, Hongwei, Yang, Dongjiang, Sarina, Sarina, et al. (2013) Tuning the surface structure of nitrogen-doped TiO2Nanofibres : an effective method to rnhance photocatalytic activities of visible-light-driven green synthesis and degradation. Chemistry : A European Journal, 19(18), pp. 5731-5741.
Yang, Dongjiang, Zhao, Jian, Liu, Hongwei, Zheng, Zhanfeng, Adebajo, Moses O., Wang, Hongxia, et al. (2013) Enhancing photoactivity of TiO2(B)/anatase core-shell nanofibers by selectively doping cerium ions into the TiO2(B) Core. Chemistry: A European Journal.
Yang, Dongjiang, Liu, Hongwei, Zheng, Zhanfeng, Sarina, Sarina, & Zhu, Huai Yong (2013) Titanate-based adsorbents for radioactive ions entrapment from water. Nanoscale, 5(6), pp. 2232-2242.
Frost, Ray L., Blain, Paul, Martens, Wayde N., & Yang, Dongjiang (2011) Sodium niobate adsorbents doped with tantalum (TaV) for the removal of bivalence radioactive ions in waste waters. Journal of Colloid and Interface Science, 356(1), pp. 240-247.
Yang, Dongjiang, Zheng, Zhanfeng, Yuan, Yong, Liu, Hongwei, Waclawik, Eric, Ke, Xuebin, et al. (2010) Sorption induced structural deformation of sodium hexa-titanate nanofibres and their ability to selectively trap radioactive Ra(II) ions from water. Physical Chemistry Chemical Physics, 12, pp. 1271-1277.
Deng, Feng, Li, Junping, Sun, Yuhan, Wu, Dong, Xu, Yao, Yang, Dongjiang, et al. (2006) Direct Formation of Hydrophobic Silica-Based Micro/Mesoporous Hybrids From Polymethylhydrosiloxane and Tetraethoxysilane. Microporous And Mesoporous Materials, 95(1-3), pp. 180-186.