[1] |
YU Yue, XI Zhixiang, ZHOU Bingjie, JIANG Binbo, LIAO Zuwei, YANG Yao, WANG Jingdai, HUANG Zhengliang, SUN Jingyuan, YANG Yongrong.
Acidity Modification of ZSM-5 for Methane Conversion in Co-feeding Method with MTA Reaction
[J]. Chemical Research in Chinese Universities, 2022, 38(4): 1012-1017.
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[2] |
XU Yanyan, LI Maogang, FENG Ting, JIAO Long, WU Fengtian, ZHANG Tianlong, TANG Hongsheng, LI Hua.
Quantitative Analysis of Methanol in Methanol Gasoline by Calibration Transfer Strategy Based on Kernel Domain Adaptive Partial Least Squares(kda-PLS)
[J]. Chemical Research in Chinese Universities, 2022, 38(4): 1057-1064.
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[3] |
LIU Yifeng, WANG Liang, and XIAO Feng-Shou.
Selective Oxidation of Methane into Methanol Under Mild Conditions
[J]. Chemical Research in Chinese Universities, 2022, 38(3): 671-676.
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[4] |
LUAN Huimin, WU Qinming, ZHANG Jian, WANG Yeqing, MENG Xiangju, XIAO Feng-Shou.
Sustainable Synthesis of Core-Shell Structured ZSM-5@Silicalite-1 Zeolite
[J]. Chemical Research in Chinese Universities, 2022, 38(1): 136-140.
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[5] |
ZHOU Xue, WANG Chao, CHU Yueying, WANG Qiang, XU Jun, DENG Feng.
Mechanistic Insight into Ethanol Dehydration over SAPO-34 Zeolite by Solid-state NMR Spectroscopy
[J]. Chemical Research in Chinese Universities, 2022, 38(1): 155-160.
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[6] |
LI Liang, ZUO Zicheng, HE Feng, JIANG Zhongqing, LI Yuliang.
Nitrogen-rich Graphdiyne Film for Efficiently Suppressing the Methanol Crossover in Direct Methanol Fuel Cells
[J]. Chemical Research in Chinese Universities, 2021, 37(6): 1275-1282.
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[7] |
CHEN Zhixiao, QIAN Miaomiao, LIU Chang, XUE Beichen, YU Liyun, ZHU Yanchao, WANG Xiaofeng.
Surface Modification of Rice Husk Ash by Ethanol-assisted Milling to Reinforce the Properties of Natural Rubber/Butadiene Rubber Composites
[J]. Chemical Research in Chinese Universities, 2021, 37(3): 757-762.
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[8] |
DONG Xin, CHEN Xi, ZHOU Zhaohui.
Efficient Synthesis of p-Hydroxyphenyl Ethanol from Hydrogenation of Methyl p-Hydroxyphenylacetate with CNTs-promoted Cu-Zr Catalyst
[J]. Chemical Research in Chinese Universities, 2021, 37(3): 745-750.
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[9] |
YU Bowen, LOU Caiyi, ZHANG Wenna, XU Shutao, HAN Jingfeng, YU Zhengxi, WEI Yingxu, LIU Zhongmin.
Insight into the Dual Cycle Mechanism of Methanol-to-Olefins Reaction over SAPO-34 Molecular Sieve by Isotopic Tracer Studies
[J]. Chemical Research in Chinese Universities, 2020, 36(6): 1203-1208.
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[10] |
DONG Lu, XU Yongkai, ZHANG Yun, SUN Aijun, HU Yunfeng.
Enantioselective Resolution of (±)-1-Phenylethyl Acetate by Using the Whole Cells of Deep-sea Bacterium Bacillus sp. DL-2
[J]. Chemical Research in Chinese Universities, 2019, 35(5): 792-798.
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[11] |
MA Fei, LI Hengli, JIANG Jiuxing.
Furfural Reduction via Hydrogen Transfer from Supercritical Methanol
[J]. Chemical Research in Chinese Universities, 2019, 35(3): 498-503.
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[12] |
CHEN Weimin, ZHANG Yu, ZHU Zhenyu.
Effects of Cerium Oxides on the Catalytic Performance of Pd/CNT for Methanol Oxidation
[J]. Chemical Research in Chinese Universities, 2019, 35(1): 133-138.
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[13] |
ZHAO Zhongrui, SONG Jinou, SU Boyang, WANG Xiaowen.
Theoretical Study on the Kinetics for the Reactions of Heptyl Radicals with Methanol
[J]. Chemical Research in Chinese Universities, 2018, 34(5): 786-791.
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[14] |
WANG Tongtong, SONG Yinqing, WANG Min, TANG Xiaoyan, ZHOU Jian, YANG Mengrui.
Total Synthesis and High Performance Liquid Chromatography Analysis of Phenylethanolamine A
[J]. Chemical Research in Chinese Universities, 2017, 33(4): 598-602.
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[15] |
BEN Shunge, YUAN Fulong, ZHU Yujun.
Effect of Zr Addition on Catalytic Performance of Cu-Zn-Al Oxides for CO2 Hydrogenation to Methanol
[J]. Chemical Research in Chinese Universities, 2016, 32(6): 1005-1009.
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