部分论文:
1. Jin, S. J.; Tan, W. X.; Tang, X. F.;Li, M. X.; Yu, X. Y.; Zhang, H. Y.; Song, S.;Zeng, T.* Unraveling the Fundamentals of Axial Coordination FeN4+1 Sites Regulating the Peroxymonosulfate Activation for Fenton-Like Activity. Small 2024, 2405012.
2. Tang, X. F.; Wang, Y. S.; Zhu, Y.; Jin, S. J.; Bao, Y. J.; Dong, F. L.; Song, S.; Zhang, H. Y.; Zeng, T.* Hydroxyl Defects-Mediated Hydrolytic Activation of Peroxydisulfate Under Nanoconfinement: Role of Lewis Basic Sites for Altering the Photosensitized Species and Pathways. Small 2024, 2406331
3.Wang, J. N.; Li, S. Q.; Yang, L.; Kwan, C. S.; Xie, C. Y.; Cheung, K. Y.; Sun, R. W. S.; Chan, A. S. C.; Huang, Z. F.*; Cai, Z. W.*; Zeng, T.*; Leung, K. C-F.* Janus and Amphiphilic MoS2 2D Sheets for Surface‐Directed Orientational Assemblies toward Ex Vivo Dual Substrate Release. Small Methods 2024, 2400533. 20240614
4. Shuqi Li; Xinming Jiang; Zhen Wang; Shuang Song; Zongwei Cai*; Ken Cham‐Fai Leung*; Tao Zeng*; Free‐Standing Janus Nanosheets: Ultrafast Self‐Assembly and Versatile Biphase‐Application, Advanced Functional Materials, 2024, 2309966.
5. Zeng, T.; Tang, X.F; Huang, Z.Q; Chen, H; Jin, S. J.; Dong F. L; He, J*; Song, S; Zhang, H. Y.*. Atomically Dispersed Fe–N4 Site as a Conductive Bridge Enables Efficient and Stable Activation of Peroxymonosulfate: Active Site Renewal, Anti-Oxidative Capacity, and Pathway Alternation Mechanism. Environ. Sci. Technol. 2023, 57(49), 20453-20974.
6. Jin, Z. Q; Jin, S. J.; Tang, X.F; Tan, W.X; Wang, D; Song, S; Zhang, H.Y; Zeng, T.*. Rational design of conjugated acetylenic polymers enables a two-electron water oxidation pathway for enhanced photosynthetic hydrogen peroxide generation. Small. 2023, 2305004.
7. Zeng, Tao*; Tang, Xiaofeng; Cai, Xinyi; Jin, Sijia; Zhu, Yi; Song, Shuang; Zhang, Haiyan*. Fluorinated Defects Engineered Acetylenic Polymers with Separated Active Centers for Switching the Photosensitized Activation Pathway of Peroxymonosulfate. ACS Catal. 2024, 14(3), 1405–1418
8. Li, S. Q.; Lai, W. S.; Jiang, X. M.; Wang, Y. S.; Cai, X. Y.; Wang, D.; Song, S.; Liu, M.; Zeng, T.* 0D/3D direct Z-scheme heterojunctions hybridizing by MoS2 quantum dots and honeycomb conjugated triazine polymers (CTPs) for enhanced photocatalytic performance. J. Environ. Sci. 2023, 124, 602-616.
9. Zeng T.*; Xia S. S.; Li S. Q.; Hong X. X.; Wang Y. S.; Wang L. T.; Huang X. W.* Kinetic and mechanistic investigations of the oxidation of organics by near-infrared light driven thermocatalytic activation of peroxydisulfate with Fe3O4. Chem. Eng. J. 2022, 140629.
10. Jin, Z. Q.; Jin, S. J.; Li, S. Q.; Zou, R.; Wang, D.; Dong F. L.; Liu, M.; Song, S.; Zeng, T.*Intramolecular engineering of defective terminations within triazine-based conjugated polymers for augmented photocatalytic H2 production and Cr(VI) reduction. J. Cleaner Prod. 2023, 422, 148556.
11. Zeng, T.; Jin, S. J.; Li, S. Q.; Bao, J. W.; Jin, Z. Q.; Wang, D.; Dong, F. L.; Zhang, H. Y. *; Song, S. Covalent Triazine Frameworks with Defective Accumulation Sites: Exceptionally Modulated Electronic Structure for Solar-Driven Oxidative Activation of Peroxymonosulfate. Environ. Sci. Technol. 2022, 56, 9474–9485.
12. Li, S. Q.; Jin, Z. Q.; Jiang, X. M.; Yu, J.; Wang, Y. S.; Jin, S. J.; Zhang, H. Y.; Song, S.; Zeng, T.*Thiophene-Incorporated CTFs with Boosted Intramolecular Charge Transfer and Defect-Abundant Networks for Potent Photosensitized Oxidation of Organics. Chem. Eng. J. 2021, 133900
13. Li, S. Q.; Jin, Z. Q.; Lai, W. S.; Zhang, H. Y.; Wang, D.; Song, S.; Zeng, T.* Alkali and donor-acceptor bridged three-dimensional interpenetrating polymer networks boost photocatalytic performance by efficient electron delocalization and charge transfer. Appl. Catal. B 2021,292, 120153.
14. Yu, Y.; Li, S. Q.; Huang, L.; Yu, J.; Zhang, H. Y.; Song, S.; Zeng, T.* Solar-driven CO2 conversion promoted by MOF - on - MOF homophase junction. Catal. Commun. 2021, 150, 106270.
15. Zeng, T.; Jin, Z. Q.; Li, S. Q.; Bao, J. W.; Huang, Z. Q.; Shen, Y.;* Zhang, H. Y.; Wang, D.; Song, S. Blocking polymerization of CTFs induces plentiful structural terminations for synchronous removal of organics and Cr(vi). Chem. Commun. 2021, 57(40), 4946-4949.
16. Yu, J.; Zeng, T.;*Wang, H.; Zhang, H.; Sun, Y. P.; Chen, L.; Song, S.; Li, L. X. Y.; Shi,, H. X.*Oxygen-defective MnO2-x rattle-type microspheres mediated singlet oxygen oxidation of organics by peroxymonosulfate activation.Chem. Eng. J. 2020, 394, 124458.
17. Shen, Y.; Zhu, C.; Song, S.; Zeng, T.;* Li, L. X. Y.; Cai Z. W. Defect-abundant covalent triazine frameworks as sunlight-driven self-cleaning adsorbents for volatile aromatic pollutants in water. Environ. Sci. Technol. 2019, 53(15), 9091-9101.
18. Zeng, T.; Li, S. Q.; Shen, Y.; Zhang, H. Y.; Feng, H. R.; Zhang, X.; Li, L. X. Y.; Cai, Z. W.;* Song, S.* Sodium doping and 3D honeycomb nanoarchitecture: Key features of covalent triazine-based frameworks (CTF) organocatalyst for enhanced solar driven advanced oxidation processes. Appl. Catal. B 2019, 257, 117915.
19. Yu, J.; Zhang, J.; Zeng, T.;* Wang, H.; Sun, Y. P.; Chen, L.; Song, S.; Shi, H. X.* Stable incorporation of MnOx quantum dots into N-doped hollow carbon: A synergistic peroxymonosulfate activator for enhanced removal of bisphenol A. Sep. Purif. Technol. 2019, 213, 264-275.
20. Xu, X.; Lai, L.; Zeng, T.;* Yu, Y.; He, Z. Q.; Chen, J.; Song, S.* In situ formation of pyridine-type carbonitrides-modified disorde-engineered C-TiO2 used for enhanced visible-light-driven photocatalytic hydrogen evolution. J. Phys. Chem. C 2018, 122(33), 18870-18879.
21. Zeng, T.; Hu X. J.; Feng H. R.; Zhang H. Y.; Chen J. M.; Song S.* Rational design of double-shelled Fe-; N-; and S-tridoped hollow mesoporous carbon spheres as high-performance catalysts for organic reactions. Chem. Commun. 2018, 54(24), 2974-2977.
22. Zeng, T.; Li S. Q.; Hua J. N.; He Z. Q.; Zhang X. L.; Feng H. R.; Song S.* Synergistically enhancing Fenton-like degradation of organics by in situ transformation from Fe3O4 microspheres to mesoporous Fe; N-dual doped carbon. Sci. Total Environ.2018, 645, 550-559.
23. Zeng T.; Hu X. J.; Feng H. R.; Zhang H. Y.; Chen J. M.; Song S.* Rational design of double-shelled Fe-; N-; and S-tridoped hollow mesoporous carbon spheres as high-performance catalysts for organic reactions. Chem. Commun. 2018,54(24), 2974-2977.
24. Zeng, T.; Zhang X. L.; Wang S. H.; Niu H. Y.; Cai Y. Q.* Spatial confinement of a Co3O4 catalyst in hollow metal-organic frameworks as a nanoreactor for improved degradation of organic pollutants. Environ. Sci. Technol. 2015,49(4), 2350-2357.
授权专利:
[1] 曾滔,郦淑琦,宋爽,一种含羟基的共价三嗪框架材料及其制备方法和应用,中国专利,ZL 202010128596.9, 2021.10.15
[2] 曾滔,郦淑琦,宋爽,含碱金属的蜂窝状共价三嗪框架材料及其制备方法和应用,中国专利,ZL 202010128248.1, 2021.10.15
[3] 曾滔,郦淑琦,宋爽,一种噻吩修饰的共价三嗪骨架材料的制备与应用,中国专利,ZL 202110709665.X, 2022.05.24
[4] 曾滔,赖维顺,郦淑琦,宋爽,一种负载有MoS2量子点的中空共价三嗪基骨架材料的制备方法和应用,中国专利,ZL202010132071.2, 2022. 04.19
[5]曾滔,包嘉文,张海燕,宋爽,一种共价三嗪基骨架催化剂及其制备方法和应用,中国专利ZL 2020 1 1476535.8, 授权日2023. 04. 07
[6] 曾滔,江新明,郦淑琦,宋爽,非对称亲水/油片层负载纳米银催化剂及其应用,中国,ZL 2022 1 0474141.1 授权日2023.09.05
[7] 曾滔,金职权,郦淑琦,宋爽,一种氨基修饰的共价三嗪基骨架及其制备方法与应用,中国,CN114409898A. 授权日2023.09.29
[8] 曾滔,郦淑琦,江新明,宋爽,一种噻吩基碳氮共轭聚合物及其制备方法和应用,中国,ZL 2021 1 1418010.3 授权日20231205
[9]宋爽,黄璐,何志桥,曾滔,二氨基吡啶烧结物复合氧化镨和四氧化三铁非均相催化剂及其应用和原位制备方法,中国专利ZL 202010817724.0,授权日2022.12.09
[10] 宋爽,黄璐,何志桥,曾滔,一种SBA-15负载氧化镨催化剂及其制备方法和应用, 中国专利,ZL 202010722316.7, 授权日2023. 03. 21
[11]黄新文,杨德忠,黄逸琳,汪清清,曾滔,丁中义,冯炜明,洪秀秀,夏莎莎,王林拓,于沛涵,孙诗雨,曹奕挺,一种高浓度溶漆废水净化机 [实用新型],中国专利ZL 202222439360.4, 授权日:2023.01.24
[12] 曾滔,邹睿,金职权,杨德忠,黄新文,宋爽,一种医疗污水处理装置 [实用新型],中国专利ZL 202322089865.7 申请日:2023.08.04,授权公告日:2024.01.09
[13] 曾滔,金职权,包英健,邹睿,宋爽,一种医药废水高效电芬顿处理一体机 [实用新型],中国专利ZL 202321728236.8 申请日:2023.07.04,授权公告日:2024.01.12
[14] 曾滔,包英健,金职权,杨德忠,黄新文,宋爽,一种电芬顿有机废水处理装置 [实用新型],中国专利ZL 202321933268.1 申请日:2023.07.21,授权公告日:2024.02.27