论文著作:
[1] Xincheng Wang, Xiangjun Zhang, Minyao He, Yongji Song, Cuiqing Li, Hong Wang. Promoting effect of multi transition metals on the NO reduction by NH3 over TiO2 catalyst studied with in situ DRIFTS. Res. Chem. Intermediat. 2020, 46, 1663-1684.
[2] Xinxheng Wang, Fenghe Zhao, Long Huang. Low temperature dehydration of glycerol to acrolein in vapor phase with hydrogen as dilution: From catalyst screening via TPSR to real-time reaction in a fixed-bed. Catalysts, 2020, 10, 43.
[3] Xincheng Wang*, Yongji Song, Long Huang, Chongpin Huang and Cuiqing Li. Tin modified Nb2O5 as an efficient solid acid catalyst for the catalytic conversion of triose sugars to lactic acid. Catal. Sci. Technol., 2019, 9, 1669-1679.
[4] Xincheng Wang*, Yongji Song, Chongpin Huang and Bin Wang*. Crystalline niobium phosphates with water-tolerant and adjustable Lewis acid sites for the production of lactic acid from triose sugars. Sustain. Energ. Fuels, 2018, 2, 1530-1541.
[5] Xingcheng Wang, Yanlei Song, Chongpin Huang*, Fengbing Liang and Biaohua Chen. Lactic acid production from glucose over polymer catalysts in aqueous alkaline solution under mild conditions. Green Chem., 2014, 16, 4234-4240.
[6] Yongji Song, Ting Wang, Liang Cheng, Cuiqing Li, Hong Wang and Xincheng Wang*. Simultaneous removal of SO2 and NO by CO reduction over prevulcanized Fe2O3/AC catalysts. Can. J. Chem. Eng. 2019, 97, 2015-2020.
[7] Guo Qiu, Xincheng Wang*, Chongpin Huang*, Yingxia Li and Biaohua Chen. Facile, one-pot, two-step, strategy for the production of potential bio-diesel candidates from fructose. Catalysts, 2017, 8, 237.
[8] Guo Qiu, Xincheng Wang, Chongpin Huang, Yingxia Li and Biaohua Chen. Niobium phosphotungstates: Excellent solid acid catalysts for the dehydration of fructose to 5-hydroxymethylfurfural under mild conditions. RSC Advances, 2018, 8(57), 32423-32433.
[9] Fengyuan Zhang, Bin Zhang, Xincheng Wang, Long Huang, Dekun Ji, Songsong Du, Lei Ma and Shijing Lin. Synthesis of tetrahydropyran from tetrahydrofurfuryl alcohol over Cu–ZnO/Al2O3 under a gaseous-phase condition. Catalysts, 2018, 8(3), 105. doi:10.3390/catal8030105.
[10] Yanlei Song, Xincheng Wang, Yongshui Qu, Chongpin Huang, Yingxia Li, Biaohua Chen. Efficient dehydration of fructose to 5-Hydroxymethylfurfural catalyzed by heteropolyacid salts. Catalysts, 2016, 6, 49.
[11] 邱果,王新承,黄崇品,张璞,李英霞,陈标华。磷钨酸盐催化蔗糖制备5-羟甲基糠醛。有机化学,2018,38(4):940-948.
[12] 庞子涛,程亮,宋永吉,王新承,李翠清,王虹。FeCoY催化剂的催化还原脱硫脱硝性能。精细化工,2019,6,1111-1117.
[13] 庞子涛,黄思齐,宋永吉,王新承,李翠清,王虹。燃煤烟气同时脱硫脱硝技术研究现状与展望。现代化工,2019,1,56-60.
[14] 黄思齐,王新承,于泳,徐庆生,宋永吉,李翠清,王虹. 负载型铜铁催化剂直接催化分解N2O的研究. 现代化工,2019,8,124-128.
[15] 仇杨君,黄思齐,庞子涛,宋永吉,王新承,李翠清,王虹. CuYO/γ-Al2O3催化剂催化分解N2O性能. 环境化学,2018,7,1591-1598.
[16] 何敏瑶,宋永吉,张明月,黄龙,王新承,黄崇品,李翠清。BaO催化纤维素转化制备乳酸的研究。北京化工大学学报(自然科学版),2019,46,1-7.
[17] 宋彦磊,王新承,黄崇品,梁凤兵,毓志超,陈标华。碱性聚合离子液体用于Claisen-Schmidt缩合反应的研究. 有机化学,2013,33,1715-1719.
[18] 汪亚美,王新承,李顺杰,黄崇品,宋彦磊,陈标华。聚合离子液体在催化转化果糖制备乳酸中的应用. 有机化学,2015,35,404-410.