周昌健

作者: 佚名   审核人: 戴勇   信息来源: 本站原创    发布时间: 2023-03-14

周昌健

 

研究方向

1. 非均相催化材料的制备

2. 光催化

3. 小分子化合物的设计与合成。

联系方式

办公室

化工楼A503

E-mail

zcj@ycit.cn

联系电话


教育经历

2015.09-2018.06

2012.09-2015.06

2010.09-2012.06

2008.09-2010.06

华南理工大学

石河子大学

南京晓庄学院

苏州农业职业技术学院

有机化学

工业催化

化学(分析)

公共营养

博士

硕士

学士

专科

工作经历

2018.11至今

盐城工学院

讲师

荣誉与奖励

1.盐城工学院先进工作者;

2.江苏省科技副总。

研究项目

1.纳米钴催化稠合环胺区域选择性构建C-S键的研究

2.吸附治理工业废气的介孔炭材料制备及吸附性能研究;

3.基于碳材料吸附技术的工业尾水处理工艺研发;

4.除尘器耐磨、耐高温、耐腐蚀涂层工艺技术的研发;

5.江苏省学位与研究生教育教学改革课题;

6.江苏省大学生创新创业训练计划项目。

代表性论文

1.Changjian Zhou, Kaiwen Sun, Wanrong Chen, He Zhao. Prediction of Biochar Phosphorus Slow-Release Rate Based on Ensemble Learning: Model Performance Comparison and Investigation of Controlling Factors for Slow-Release Performance. ACS Sustainable Chem. Eng., 2026, 14, 9077-9092. (IF: 7.3)

2.Ze Liu, Chengkai Li, Zhenyu Zhang, Danni Zeng, Jun Song, Rongfeng Guan, Changjian Zhou*. Ni-MOF-74 templated growth of N-doped ZnIn2S4 S-scheme heterojunction photocatalyst for bifunctional hydrogen evolution and H2O2 generation. Chem. Eng. J., 2026, 531, 173946. (IF: 13.2)

3.Changjian Zhou, Ziming Zhu, Jie Li, Xiangyu Lin, Xujuan Huang, Xu Xu, He Liu. Highly reliable deep eutectic gel electrolyte with synergistic conductivity, fatigue resistance, and freezing tolerance for high-performance flexible supercapacitors. Chem. Eng. J., 2026, 528, 172699. (IF: 13.2)

4.Anhang Zhang, Hui Dai, Ancheng Wu, Changjian Zhou*. Unraveling Temperature-Dependent Differences in Reduction for CO2 Photothermal Catalysis over CoCe and NiCe. Inorg. Chem., 2025, 64(48), 23632-23643. (IF: 4.7)

5.Zhenyu Zhang, Changlei Huang, Ze Liu, Chengkai Li, Danni Zeng, Rongfeng Guan, Changjian Zhou*. Vacancy-engineered S-scheme MoS2/ZnIn2S4 heterojunction for bifunctional photocatalytic H2 evolution and H2O2 production. Appl. Surf. Sci., 2026, 718, 164966. (IF: 6.9)

6.Changjian Zhou, Hailang Liu, Tong Liu, Yusheng Wu, Wanrong Chen, Zhengqing Ding, Xinyan Yan, Xujuan Huang, Zhaosheng Cai. Hydrophobically rosin-modified hydroxyethyl cellulose stabilizes oil-in-water emulsion gel with high compliance. Int. J. Biol. Macromol., 2025, 320, 145868. (IF: 8.5)

7.Ze Liu, Yadong Hu, Chengkai Li, Zhenyu Zhang, Tingzhe Shen, Danni Zeng, Rongfeng Guan, Changjian Zhou*. Pengyu Dong. Fabrication of S-scheme heterojunction consisting of W-doped BiVO4 and biperovskite Cs2AgBiBr6 for photocatalytic degradation of antibiotics. J. Colloid Interf. Sci., 2025, 696, 137892. (IF: 9.7)

8.Hui Dai, Anhang Zhang, Ancheng Wu, Tianyu Wu, Xin Xiao, Changjian Zhou*. The reverse water gas shift with photo-thermo-catalytic synergistic catalysis by CuCe-LDO. Mater. Today Chem., 2025, 45, 102648. (IF: 6.7)

9.Hui Dai, Ancheng Wu, Anhang Zhang, Wenwen Chen, Changjian Zhou*. Influence of CeO2 crystal facet on acetylene selective hydrogenation over Pd/CeO2 catalysts. Appl. Surf. Sci., 2025, 687, 162288. (IF: 6.9)

10.Changjian Zhou, Yadong Hu, Zhenyu Zhang, Tingzhe Shen, Jun Song, Rongfeng Guan, Yaquan Guan. B doped BiVO4/Bi nanocomposites activated persulfate for efficient photocatalytic degradation of levofloxacin. Sep. Purif. Technol., 2025, 359, 130557. (IF: 9.0)

11.Danni Zeng, Tingzhe Shen, Yadong Hu, Zhenyu Zhang, Ze Liu, Ning Xu, Jun Song, Rongfeng Guan, Changjian Zhou*. Nitrogen-doped ZnIn2S4 and TPA multi-dimensional synergistically enhance photocatalytic hydrogen production. Fuel, 2025, 380, 133151. (IF: 7.5)

12.Hui Dai, Anhang Zhang, Ruixiang Wang, Xin Xiao, Xiaoyan Li, Changjian Zhou*. Investigation of different ratio of CuCe catalysts applied in photothermal reverse water gas shift reaction. Appl. Catal. A-Gen., 2024, 686, 119927. (IF: 4.8)

13.Tingzhe Shen, Danni Zeng, Ze Liu, Yadong Hu, Yaxi Tian, Jun Song,Tao Yang, Rongfeng Guan, Changjian Zhou*. S-scheme Bi/Bi2WO6/TiO2 nanofiber photocatalyst for efficient degradation of sulfamethoxazole. Sep. Purif. Technol., 2021, 351, 128130. (IF: 9.0)

14.Danni Zeng, Tingzhe Shen, Yadong Hu, Fengjiao Liu, Ze Liu, Jun Song, Rongfeng Guan, Changjian Zhou*. ZnIn2S4-based multi-interface coupled photocatalyst for efficient photothermal synergistic catalytic hydrogen evolution. J. Colloid Interf. Sci., 2024, 670, 395-408. (IF: 9.7)

15.Hui Dai, Xiaobing Deng, Anhang Zhang, Yongqing Zhu, Xin Xiao, Yan Wang, Changjian Zhou*. Mo-based bimetallic oxide catalysts for the reverse water gas shift reaction. Int. J. Hydrogen. Energ., 2024, 68, 1-7. (IF: 7.2)

16.Changjian Zhou, Jiahao Zhang, Yuqing Fu, Maowan Wu, Heng Zhang, Qingle Shi, Yong Dai, He Zhao. High-Value Oil-Water Separation Materials Prepared from Waste Polyethylene Terephthalate. Molecules, 2023, 28, 7503. (F: 4.6)

17.Changjian Zhou, Jiahao Zhang, Yuqing Fu, Hui Dai. Recent Advances in the Reverse Water-Gas Conversion Reaction. Molecules, 2023, 28, 7657. (IF: 4.6)

18.Changjian Zhou, Jiahao Zhang, Yuqing Fu, Chunlian Chen, He Zhao. Iridium-Catalysed Transfer Hydrogenation of 1, 8-Naphthyridine with Indoline: Access to Functionalized N-Heteroarenes. Molecules, 2023, 28, 7886. (IF: 4.6)

19.Dai Hui, Xiong Siqi, Zhu Yongqing, Zheng Jian, Huang Lihong, Zhou Changjian*, Deng Jie, Zhang Xinfeng. NiCe bimetallic nanoparticles embedded in hexagonal mesoporous silica (HMS) for reverse water gas shift reaction, Chinese Chem. Lett., 2022, 33(5), 2590-2594. (IF: 8.455)

20.Hui Dai, Anhang Zhang, Siqi Xiong, Xin Xiao, Changjian Zhou*, Yi Pan. The Catalytic Performance of Ga2O3 Composite Oxides over Reverse Water Gas Shift Reaction, ChemCatChem, 2022, 14(6), e202200049. (IF: 5.501)

21.Yuan Liu, Chen Wang, Yixin Tong, Yong Ling, Changjian Zhou*, Biao Xiong. Cascade Reaction of α,β‐Unsaturated Ketones and 2-Aminoaryl Alcohols for the Synthesis of 3-Acylquinolines by a Copper Nanocatalyst, Adv. Synth. Catal., 2021, 363, 4422-4429. (IF: 5.981)

22.Changjian Zhou, Rong Sun, Yuting Zhang, Biao Xiong, Hui Dai, Yong Dai. Co-N-Si/AC Catalyst for Aerobic Oxidation of Benzyl Alcohols to Esters under Mild Conditions. Molecules, 2021, 26, 6792. (IF: 4.927)

23.Hui Dai, Yongqing Zhu, Siqi Xiong, Xin Xiao, Lihong Huang, Jie Deng, Changjian Zhou*. Dry Reforming of Methane over Ni/MgO@Al Catalysts with Unique Features of Sandwich Structure. ChemistrySelect, 2021, 6, e202102788.  (IF: 2.307)

24.Hui Dai, Xin Xiao, Lihong Huang, Changjian Zhou*, Jie Deng. Different catalytic behavior of Pd/Palygorskite catalysts for semi-hydrogenation of acetylene. Appl. Clay Sci., 2021, 211, 106173. (IF: 5.907)

25.Liyong Du, Li Shi, Yunxiao Liu, Yong Ling, Yanan Zhang, Changjian Zhou*, Biao Xiong. Nanonickel Oxides Prepared by Atomic Layer Deposition as Efficient Catalyst for the Dehydrogenation of NHeterocycles. ChemistrySelect, 2020, 5, 11811-11816. (IF: 2.307)

26.Changjian Zhou, Zhenda Tan, Huanfeng Jiang, Min Zhang, Sustainable oxidative esterification of thiols with alcohols by a cobalt nanocatalyst supported on doped carbon, Green Chem., 2018, 20, 1992-1997. (IF: 11.034)

27.Changjian Zhou, Zhenda Tan, Huanfeng Jiang, Min Zhang, Synthesis of (E)-2-Alkenylazaarenes via Dehydrogenative Coupling of (Hetero)aryl-fused 2-Alkylcyclic Amines and Aldehydes with a Cobalt Nanocatalyst, ChemCatChem, 2018, 10, 2887-2892. (IF: 5.501)

28.Changjian Zhou, Jie Zhang, Ping Liu, Jianwei Xie, Bin Dai, 2-Pyrrolecarbaldiminato-Cu(II) Complex Catalyzed Three-Component 1, 3-Dipolar Cycloaddition for 1, 4-Disubstituted 1, 2, 3-Triazoles Synthesis in Water at Room Temperature, RSC Adv., 2015, 5, 6661-6665. (IF: 3.84)

29.周昌健, 谢建伟, 张洁, 代斌, 大黄酸-氨基酸缀合物的合成及初步抗肿瘤活性研究, Chin. J. Org. Chem., 2017, 37, 122-132. (IF: 1.392)

30.Zhenda Tan, He Zhao, Changjian Zhou, Huanfeng Jiang, Min Zhang, Aerobic Copper-Catalyzed Halocyclization of Methyl N-Heteroaromatics with Aliphatic Amines: Access to Functionalized Imidazo-Fused N-Heterocycles, J. Org. Chem., 2016, 81, 9939-9946. (IF: 4.198)

31.张洁, 周昌健, 谢建伟, 代斌. 大黄酸-缬氨酸加合物的合成及初步抗肿瘤活性, 高等学校化学学报, 2016, 37, 2159-2167. (IF: 0.677)

32.Changbo Hao, Changjian Zhou, Jianwei Xie, Jie Zhang, Ping Liu, Bin Dai, An Efficient Copper-Catalyzed One-Pot Synthesis of 1-Aryl-1, 2, 3-triazoles from Arylboronic Acids in Water under Mild Conditions, Chin. J. Chem., 2015, 33, 1317-1320. (IF: 5.560)

专利

1.一种基于水解法的纳米催化材料合成装置;

2.一种有机合成工业含盐废水中废盐的回收方法

3.一种逆水煤气变换催化剂制备方法及其应用;

4.一种逆水煤气变换催化剂及其制备方法。









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