[1] Liu, Qing, Ma, Jianfeng*, Wang, Kai, Feng, Ting, Peng, Mingguo, Yao, Zesheng, Fan, Canghai, Komarneni, Sridhar. BiOCl and TiO2 deposited on exfoliated ZnCr-LDH to enhance visible-light photocatalytic decolorization of Rhodamine B. Ceramics International. 2017, 43(7): 5751-5758.(SCI 2区) [2] Wang, Kai, Ma, Jianfeng*, Yao, Zesheng, Zhang, Wenyi, Komarneni, Sridhar. Synthesis and photocatalytic properties of new ternary Ni-Fe-Cr hydrotalcite-like compounds.Ceramics International. 2016, 42(14): 15981-15988. (SCI 2区) [3] Ma, Jianfeng, Liu, Qing, Zhu, Lifang, Zou, Jing, Wang, Kai, Yang, Meirong, Komarneni, Sridhar. Visible light photocatalytic activity enhancement of Ag3PO4 dispersed on exfoliated bentonite for degradation of rhodamine B. Applied Catalysis B: Environmental. 2016, 182: 26-32. (SCI 1区,影响因子9.4,高被引) [4] Ma, Jianfeng, Huang, Daiqin, Zhang, Wenyi, Zou, Jing, Kong, Yong, Zhu, Jianxi, Komarneni, Sridhar. Nanocomposite of exfoliated bentonite/g-C3N4/Ag3PO4 for enhanced visible-light photocatalytic decomposition of Rhodamine B. Chemosphere. 2016, 162: 269-276. (SCI 2区) [5] Zhu, Lifang, Huang, Daiqin, Ma, Jianfeng*, Wu, Deren, Yang, Meirong, Komarneni, Sridhar. Fabrication of AgBr/Ag2CrO4 composites for enhanced visible-light photocatalytic activity. Ceramics International. 2015, 41(9): 12509-12513. (SCI 2区) [6] Ma, Jianfeng, Wang, Kai, Li, Liangyin, Zhang, Tianli, Kong, Yong, Komarneni, Sridhar. Visible-light photocatalytic decolorization of Orange II on Cu2O/ZnO nanocomposites. Ceramics International. 2015, 41(2): 2050-2056. (SCI 2区) [7] Ma, Jianfeng, Huang, Daiqin, Zou, Jing, Li, Liangyin, Kong, Yong, Komarneni, Sridhar. Adsorption of methylene blue and Orange II pollutants on activated carbon prepared from banana peel. Journal of Porous Materials. 2015, 22(2): 301-311. (SCI 4区) [8] Ma, Jianfeng, Ding, Jiafan, Yu, Liangmin, Li, Liangyin, Kong, Yong, Komarneni, Sridhar. Synthesis of Fe2O3-NiO-Cr2O3 composites from NiFe-layered double hydroxide for degrading methylene blue under visible light. Applied Clay Science. 2015, 107: 85-89. (SCI 2区) [9] Ma, Jianfeng, Ding, Jiafan, Yu, Liangmin, Li, Liangyin, Kong, Yong, Komarneni, Sridhar. BiOCl dispersed on NiFe-LDH leads to enhanced photo-degradation of Rhodamine B dye. Applied Clay Science. 2015, 109: 76-82. (SCI 2区) [10] Ma, Jianfeng*, Ding, Jiafan, Li, Liangyin, Zou, Jing, Kong, Yong, Komarneni, Sridhar. In situ reduction for synthesis of nano-sized Cu2O particles on MgCuAl-LDH layers for degradation of orange II under visible light. Ceramics International. 2015, 41(2): 3191-3196. (SCI 2区) [11] Ma, Jianfeng*, Zou, Jing, Li, Liangyin, Yao, Chao, Kong, Yong, Cui, Bingying, Zhu, Runliang, Li, Dinglong. Nanocomposite of attapulgite-Ag3PO4 for Orange II photodegradation. Applied Catalysis B-Environmental. 2014, 144: 36-40. (SCI 1区,影响因子9.4) [12] Ma, Jianfeng*, Li, Liangyin, Zou, Jing, Kong, Yong, Komarneni, Sridhar. Highly efficient visible light degradation of Rhodamine B by nanophasic Ag3PO4 dispersed on SBA-15. Microporous and Mesoporous Materials. 2014, 193: 154-159. (SCI 2区) [13] Ma, Jianfeng*, Huang, Wenyan, Chen, Kunfeng, Xue, Dongfeng, Komarneni, Sridhar. High Surface Area Activated Carbon Synthesized from Bio-Based Material for Supercapacitor Application. Nanoscience and Nanotechnology Letters. 2014, 6(11): 997-1000. (SCI 4区) [14] Ma, Jianfeng*, Zou, Jing, Li, Liangyin, Yao, Chao, Zhang, Tianli, Li, Dinglong. Synthesis and characterization of Ag3PO4 immobilized in bentonite for the sunlight-driven degradation of Orange II. Applied Catalysis B-Environmental. 2013, 134: 1-6. (SCI 1区,影响因子9.4) [15] Ma, Jianfeng*, Zou, Jing, Cui, Bingying, Yao, Chao, Li, Dinglong. Adsorption of Orange II dye from aqueous solutions using phosphoric-acid modified clam shell powder. Desalination and Water Treatment. 2013, 51(34-36): 6536-6544. (SCI 4区) [16] Ma, Jianfeng*, Qi, Jing, Yao, Chao, Cui, Bingying, Zhang, Tianli, Li, Dinglong. A novel bentonite-based adsorbent for anionic pollutant removal from water. Chemical Engineering Journal. 2012, 200: 97-103. (SCI 1区)
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