[1] |
ZHANG Xinxin, XU Di, WANG Yanqiu, HONG Xinlin, LIU Guoliang, YANG Hengquan.
Effect of Mn Promoter on CuFe-based Catalysts for CO2 Hydrogenation to Higher Alcohols
[J]. Chem. J. Chinese Universities, 2022, 43(7): 20220187.
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[2] |
ZHOU Zixuan, YANG Haiyan, SUN Yuhan, GAO Peng.
Recent Progress in Heterogeneous Catalysts for the Hydrogenation of Carbon Dioxide to Methanol
[J]. Chem. J. Chinese Universities, 2022, 43(7): 20220235.
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[3] |
DING Yang, WANG Wanhui, BAO Ming.
Recent Progress in Porous Framework-immobilized Molecular Catalysts for CO2 Hydrogenation to Formic Acid
[J]. Chem. J. Chinese Universities, 2022, 43(7): 20220309.
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[4] |
HUANG Xiaoshun, MA Haiying, LIU Shujuan, WANG Bin, WANG Hongli, QIAN Bo, CUI Xinjiang, SHI Feng.
Recent Advances on Indirect Conversion of Carbon Dioxide to Chemicals
[J]. Chem. J. Chinese Universities, 2022, 43(7): 20220222.
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[5] |
ZHOU Leilei, CHENG Haiyang, ZHAO Fengyu.
Research Progress of CO2 Hydrogenation over Pd-based Heterogeneous Catalysts
[J]. Chem. J. Chinese Universities, 2022, 43(7): 20220279.
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[6] |
SONG Youwei, AN Jiangwei, WANG Zheng, WANG Xuhui, QUAN Yanhong, REN Jun, ZHAO Jinxian.
Effects of Ag,Zn,Pd-doping on Catalytic Performance of Copper Catalyst for Selective Hydrogenation of Dimethyl Oxalate
[J]. Chem. J. Chinese Universities, 2022, 43(6): 20210842.
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[7] |
HU Huimin, CUI Jing, LIU Dandan, SONG Jiaxin, ZHANG Ning, FAN Xiaoqiang, ZHAO Zhen, KONG Lian, XIAO Xia, XIE Zean.
Influence of Different Transition Metal Decoration on the Propane Dehydrogenation Performance over Pt/M-DMSN Catalysts
[J]. Chem. J. Chinese Universities, 2022, 43(4): 20210815.
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[8] |
MENG Xiangyu, ZHAN Qi, WU Yanan, MA Xiaoshuang, JIANG Jingyi, SUN Yueming, DAI Yunqian.
Photothermal Enhanced Photocatalytic Hydrogenation Performance of Au/RGO/Na2Ti3O7
[J]. Chem. J. Chinese Universities, 2022, 43(3): 20210655.
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[9] |
LI Xueyu, WANG Zhao, CHEN Ya, LI Keke, LI Jianquan, JIN Shunjing, CHEN Lihua, SU Baolian.
Enhanced Catalytic Performance of Supported Nano-gold by the Localized Surface Plasmon Resonance for Selective Hydrogenation of Butadiene
[J]. Chem. J. Chinese Universities, 2022, 43(10): 20220174.
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[10] |
LUO Qiangqiang, JIN Shaoqing, SUN Hongmin, YANG Weimin.
Post-synthesis of Ti-MWW Zeolite via Titanium Incorporation in Liquid Acid Solution
[J]. Chem. J. Chinese Universities, 2021, 42(9): 2742.
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[11] |
FAN Ye, HAN Huihui, FANG Yun, FENG Ruiqin, XIA Yongmei.
Facile Synthesis of Hollow Nickel Submicrospheres with Hierarchical Nano-structure and Its Catalytic Hydrogenation of Phenol
[J]. Chem. J. Chinese Universities, 2021, 42(6): 1801.
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[12] |
YAN Pengquan, WANG Jingrong, SHEN Yaxing, ZUO Zhijun, GAO Zhihua, HUANG Wei.
Effect of CuAl2O4 Spinel Structure on CO Hydrogenation in Slurry Reactor
[J]. Chem. J. Chinese Universities, 2021, 42(6): 1846.
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[13] |
LIU Hanlin, YIN Linlin, CHEN Xifeng, LI Guodong.
Recent Advances in Indium Oxide Based Nanocatalysts for Selective Hydrogenation of CO2
[J]. Chem. J. Chinese Universities, 2021, 42(5): 1430.
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[14] |
XIAO Zhaozhong, MA Zhi, PIAO Lingyu.
Co-catalytic Effect of Ni2P on Photocatalytic Formic Acid Dehydrogenation over Different Semiconductors
[J]. Chem. J. Chinese Universities, 2021, 42(12): 3692.
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[15] |
CHEN Xiangyun, ZHU Benqiang, YUAN Bing, YU Fengli, XIE Congxia, YU Shitao.
Hydrogenation of α-Pinene Catalyzed by Ru Nanoparticles Stabilized by Magnetic Alkali Lignin Amine
[J]. Chem. J. Chinese Universities, 2020, 41(8): 1826.
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