[1] |
GUO Lixing, PANG Weiying, MA Keyao, YANG Jiahan, SUN Zehui, ZHANG Pan, FU Dong, ZHAO Kun.
Hierarchically multilayered TiO2 with spatial pore-structure for efficient photocatalytic CO2 reduction
[J]. Chemical Industry and Engineering Progress, 2023, 42(7): 3643-3651.
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[2] |
DUO Jia, YAO Guodong, WANG Yingji, ZENG Xu, JIN Binbin.
Effects on the photo-degradation of norfloxacin using modified Au-TiO2
[J]. Chemical Industry and Engineering Progress, 2023, 42(2): 624-630.
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[3] |
ZHANG Huixia, ZHOU Lishan, ZHANG Chenglei, QIAN Guanglei, XIE Chenxin, ZHU Lingzhi.
Preparation of Bi2S3/TiO2 nanocone photoanode and their photoelectrocatalysis degradation of hygromycin
[J]. Chemical Industry and Engineering Progress, 2023, 42(10): 5548-5557.
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[4] |
XIONG Jian, XIA Liufen, YU Lei, FEI Anjie, XU Chu, CHEN Shengya, JIANG Guodong.
Preparation and electrochromic properties of graphene oxide and TiO2-B composite films
[J]. Chemical Industry and Engineering Progress, 2022, 41(7): 3794-3800.
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[5] |
DAI Shaoling, YU Zhen, LI Yihang, CHENG Shao’an.
Hierarchically nanostructured blue TiO2 with enhanced electrochemical oxidation performance and stability
[J]. Chemical Industry and Engineering Progress, 2022, 41(2): 862-873.
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[6] |
ZHAO Wenxia, ZHAO Yu, CHAI Ziru, ZHANG Shuo, WANG Shixin, JIAO Zhijie.
Visible-light catalytic performance and mechanism of mesoporous TiO2 modified by N2 plasma
[J]. Chemical Industry and Engineering Progress, 2022, 41(11): 5820-5829.
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[7] |
XIA Zhenguo, ZHU Yingying, CHEN Geng, LU Yu, WANG Jiafeng.
Progress in preparation and modification of TiO2/AC composite photocatalysts for environmental purification
[J]. Chemical Industry and Engineering Progress, 2021, 40(7): 3837-3846.
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[8] |
Caiyun JIANG, Ting WU, Haifei ZHOU, Yuping WANG.
Preparation and property of a molecular imprinted material with photocatalytic activity controlled by temperature and pH
[J]. Chemical Industry and Engineering Progress, 2021, 40(1): 305-312.
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[9] |
Lu DONG, Yaji HUANG, Shouyi DING, Haoqiang CHENG, Sheng WANG, Yufeng DUAN.
Experimental on simultaneous NO and mercury removal over manganese modified Ti-Al composite catalyst
[J]. Chemical Industry and Engineering Progress, 2021, 40(1): 234-241.
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[10] |
Xueliang YIN, Heli MA, Changwei GONG, Chengwu DU, Tingquan HAN.
Promoting law and mechanism of TiO2 addition on sintering of CaAl4O7 refractory
[J]. Chemical Industry and Engineering Progress, 2020, 39(S1): 200-205.
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[11] |
Zhiqin LI,Qiao LI,Wei HUANG,Liang DING,Zegang QIU.
Direct synthesis of C2-oxygenates from CH4 and CO2 over acid-modified CoPd/TiO2 catalyst
[J]. Chemical Industry and Engineering Progress, 2020, 39(3): 1035-1042.
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[12] |
Xianxiong CHENG,Yuliang CHEN,Zhangliang KONG,Jinming LIAO,Junfeng LIAN,Yalian HUANG.
Preparation of titanium dioxide nanotubes by anodic oxidation and analysis of the formation process
[J]. Chemical Industry and Engineering Progress, 2020, 39(3): 1095-1100.
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[13] |
Jian SHI,Feng HUI,Jun YUAN,Suning MEI,Qinwei YU,Qian ZHANG,Weiqiang WANG,Yani LI,Fengwei ZHAO,Jianming YANG,Jian LÜ.
Ru-CeO x /TiO2 composite oxide for catalytic oxidation of HCl to Cl2
[J]. Chemical Industry and Engineering Progress, 2019, 38(9): 4102-4108.
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[14] |
You WANG,Qiang LI,Shixiang ZUO,Xiazhang LI,Wenjie LIU,Fengqin WU,Chao YAO.
Preparation of rutile TiO2 dispersion slurry and its rheological properties
[J]. Chemical Industry and Engineering Progress, 2019, 38(12): 5465-5470.
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[15] |
Lifu NIE, Zhe XU, Shanming KE, Xierong ZENG, Peng LIN.
Research progress of the modification of TiO2 by Au nanoparticles for photoelectrocatalytic applications
[J]. Chemical Industry and Engineering Progress, 2019, 38(07): 3274-3284.
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