论文著作:
[1] Xue Sun, Fang Li*, Zhimiao Wang, Hualiang An, Wei Xue*, Xinqiang Zhao, Yanji Wang. Fast hydrogen evolution by formic acid decomposition over AuPd/TiO2-NC with enhanced stability. International Journal of Hydrogen Energy, 2023, 48(35): 13000-13011
[2] Xingyu Wen, Shixiao Zhong, Wei Sun, Wei Xue*, Wenshuai Bai*. Development of an optimal bilayered back propagation neural network (BPNN) to identify thermal behaviors of reactions in isoperibolic semi-batch reactors. Process Safety and Environmental Protection, 2023, 173: 627-641
[3] Wei Xue, Miaomiao Qu, Ziyan Wang, Wensong Li, Aizhong Jia, Fang Li, Zhimiao Wang, Yanji Wang. Role of benzene-1,3,5- tricarboxylate ligand in CuO-CeO2 catalysts derived from metal-organic frameworks for carbon monoxide oxidation. Catalysis Letters, 2023, 153: 219-229
[4] Pu Zhao, Xiaohui Qiao, Xue Sun, Zhimiao Wang, Fang Li*, Hualiang An, Wei Xue*, Yanji Wang. Solubility of xylene isomers in seven deep eutectic solvents. Journal of Chemical and Engineering Data, 2023, 68: 416−429
[5] Tingting Chang, Zhimiao Wang, Hualiang An, Fang Li*, Wei Xue*, Yanji Wang. Morphology effects of CeO2 for catalytic oxidation of formaldehyde. Journal of Environmental Chemical Engineering, 2022, 10: 108053
[6] Fangyi Pei, Zhimiao Wang, Jianhua Lv, Fang Li*, Wei Xue*. Efficient catalytic transfer hydrogenation of acetophenone to 1-phenylethanol over Cu-Zn-Al catalysts. Industrial & Engineering Chemistry Research, 2022, 61, 5419-5428
[7] Xue Sun,Fang Li*, Zhimiao Wang*, Hualiang An, Wei Xue*, Yanji Wang. AgPd nanoparticles anchored on TiO2 derived from a titanium metal-organic framework for efficient dehydrogenation of formic acid. ChemCatChem 2022, 14: e202101528
[8] Hansen Yang, Zhimiao Wang, Hualiang An, Qiusheng Yang, Wei Xue*, Fang Li*, Yanji Wang. Catalyst-free N-methylation of 3-methylxanthine with dimethyl carbonate in water: green synthesis of theobromine. New Journal of Chemistry, 2022, 46: 12934-12940
[9] Tong Wang, Wei Suo, Miaomiao Qu, Fang Li, Shujuan Sun,Wei Xue*, Yanji Wang*. Cu/CuOx@C for efficient selective transfer hydrogenation of furfural to furfuryl alcohol with formic acid. Journal of Chemical Technology and Biotechnology, 2022; 97: 3172-3182
[10] 朱林, 韩威, 李文松, 邬长城, 李芳, 薛伟*, 王延吉. [BMIm]Br离子液体辅助HZSM-5催化乙酸环己酯高选择性水解反应, 化工学报, 2020, 71(4): 1619-1627.
发明专利:
[1] 一种由3-甲基黄嘌呤甲基化制备可可碱的方法, 薛伟, 杨瀚森, 李芳, 谢丽莎, 孙道来, 赵新强, 王延吉,专利号: 202110174812.8,授权日期:2022.04.15
[2] 一种环保型茶碱钠盐甲基化制备咖啡因的方法, 专利号:201910184371.2,授权日期:2022.04.01
[3] 一种苯乙醇脱水制苯乙烯的催化剂及其制备和应用方法, 薛伟, 刘继东, 吕建华, 专利号:202010906378.3,授权日期:2021.09.14
[4] 一种苯乙酮加氢制苯乙醇的催化剂及其制备和应用方法, 薛伟, 吕建华, 刘继东, 专利号:202010905115.0,授权日期:2021.09.07
[5] 一种用于催化苯酚氧化羰基化反应的催化剂及其制备和应用方法, 薛伟, 郭硕, 王志苗, 李芳, 王延吉, 专利号:201810077373.7,授权日期:2020.11.03
[6] 一种制备四方相纳米钛酸钡的方法, 薛伟, 韩伟宁, 封刚, 李芳, 王延吉, 专利号:201711348631.2,授权日期:2019.06.25
[7] 一种由环己烯、羧酸和水反应合成环己醇方法,薛伟, 姚洁, 金长青, 李芳, 张东升, 王延吉,专利号:201410008708.1,授权日期:2016.01.20
[8] 一种用于苯酚氧化羰基化合成碳酸二苯酯的催化剂及其制备和应用方法, 薛伟, 滕哲, 王志苗, 袁烨, 张东升, 王延吉, 专利号:201310578928.3,授权日期:2015.05.27
[9] 一种由香兰素制备原儿茶醛的方法, 薛伟, 周华华, 专利号:201110118049.3,授权日期:2015.03.11
[10] 环己烯水合制备环己醇用催化剂及其制备和应用方法, 薛伟, 杜文明, 李芳, 王延吉, 专利号:201110155189.8,授权日期:2013.12.18