
男,博士,教授。
E-mail:shichao_qi@njtech.edu.cn
学习工作经历
2026年至今,南京工业大学,教授;
2020年–2026年,南京工业大学,副教授;
2017年–2020年,南京工业大学,讲师;
2014年–2017年,日本九州大学,工学博士;
2011年–2014年,中国矿业大学,工学硕士;
2007年–2011年,中国石油大学(华东),理学学士。
研究方向
聚焦多孔功能材料的构筑及其在吸附分离、非均相催化等领域的应用,融合量子化学计算与分子模拟,探究材料构筑机制与作用原理。担任化工工艺、吸附原理与技术、留学生Chemical Technology等课程的本科教学,参编《化学工艺学》(第三版)。
代表性成果
(1) S. C. Qi, Y. Y. Han, Y. L. Liu, Y. J. Zhao, Q. Q. Huang, X. Q. Liu, L. B. Sun.* Adsorption based on excitation. Nat. Commun., 2026, 17: 7073.
(2) Y. J. Li, Q. Q. Huang, S. C. Qi,* X. Q. Liu, L. B. Sun.* Porous Silica Loaded with Polyethylenimine and Diethanolamine for CO2 Capture from Kitchen Flue Gas. Ind. Eng. Chem. Res., 2026, 65: 12364-12372.
(3) H. M. Fu, X. P. Zhang, S. C. Qi,* D. H. Liu.* Efficient liquid-phase adsorptive separation between p- and m-Chlorotoluene by a metal-organic framework Mn-dhbq. Sep. Purif. Technol., 2026, 382: 135978.
(4) 亓士超, 刘晓勤, 孙林兵.* 智能吸附分离:化工分离新路径. 化工进展, 2026, 45: 3186-3190.
(5) S. C. Qi, M. J. Zhang, L. Zheng, Y. Y. Han, X. Q. Liu, L. B. Sun.* Adsorptive Carbon Capture Performances of Porous Carbon Improved by Photoinduction. Carbon, 2025, 241: 120397.
(6) Q. Q. Huang, X. P. Zhang, S. C. Qi,* W. J. Zhang, L. B. Sun.* Azobenzene-based metal-organic framework incorporating persistent luminescent material LiYGeO4:Bi3+ as the adsorbent for photo-responsive adsorption of CO2. Sep. Purif. Technol., 2025, 376: 133921.
(7) J. X. Li,† Y. J. Zhao,† Y. F. Yu, Q. Q. Huang, S. C. Qi,* X. Q. Liu, L. B. Sun.* The selective adsorption of anionic dyes over 3D printing composite sorbents of aerogel and porous carbon. Sep. Purif. Technol., 2025, 360: 130945.
(8) S. J. Zhou, Z. Wei, H. R. Xie, Q. C. Jiang, C. L. Li, H. Hu, J. J. Jiang, S. C. Qi,* Y. Kong.* Ultrafast photoreduction of Cr(VI) by enhanced adsorption and internal electric field induced via S-scheme In2S3/Sn3O4 heterostructures with robust interface. Sep. Purif. Technol., 2025, 354: 128653.
(9) S. C. Qi, Y. J. Zhao, X. J. Lu, Y. L. Liu, Z. Sun, X. Q. Liu, L. B. Sun.* Excitation generated preferential binding sites for ethane on porous carbon–copper porphyrin sorbents: ethane/ethylene adsorptive separation improved by light. Chem. Sci., 2024, 15: 7285-7292.
(10) S. C. Qi, Y. H. Ding, Z. P. Ding, L. Zheng, M. J. Zhang, Y. J. Li, X. Q. Liu, L. B. Sun.* Positively Photo-Responsive Adsorption Over Binary Copper Porphyrin Framework and Graphene Film Sorbents. Small, 2024, 20: 2406621.
(11) S. C. Qi, Y. L. Liu, X. J. Lu, Y. J. Zhao, J. X. Li, X. Q. Liu, L. B. Sun.* Enhanced CO Adsorption by Modulating the Electron Density Distribution of Graphite-Copper Porphyrin Sorbents with Light. Angew. Chem. Int. Ed., 2023, 62: e202304367.
(12) S. C. Qi, Z. Sun, Z. H. Yang, Y. J. Zhao, J. X. Li, X. Q. Liu, L. B. Sun.* Photo-Responsive Carbon Capture over Metalloporphyrin-C60 Metal-Organic Frameworks via Charge-Transfer. Research, 2023, 6: 0261.
(13) S. C. Qi, Y. F. Yu, Z. H. Yang, X. Y. Liu, X. J. Lu, X. Q. Liu, L. B. Sun.* Active sites modulation with Runge–Gross theorem: CO2 capture by porphyrinic metal–organic frameworks at excited states. AIChE J., 2023, 69: e17994.
(14) W. J. Zhang, L. Zheng, S. C. Qi,* J. X. Li, D. M. Xue, X. Q. Liu, L. B. Sun.* Maintaining the configuration of a light-responsive metal–organic framework: LiYGeO4:Bi3+-incorporation-induced long-term bending through short-time light irradiation. J. Mater. Chem. A, 2023, 11: 17484-17490.
(15) S. C. Qi, X. Y. Liu, R. R. Zhu, D. M. Xue, X. Q. Liu, L. B. Sun.* Causation of catalytic activity of Cu-ZnO for CO2 hydrogenation to methanol. Chem. Eng. J., 2022, 430: 132784.
(16) S. C. Qi, X. J. Lu, Y. C. Lou, R. Zhou, D. M. Xue, X. Q. Liu, L. B. Sun.* Implementing an “impracticable” copolymerization to fabricate a desired polymer precursor for N-doped porous carbons. Engineering, 2022, 16: 154-161.
(17) S. C. Qi, Z. H. Yang, R. R. Zhu, X. J. Lu, D. M. Xue, X. Q. Liu, L. B. Sun.* The cascade catalysis of the porphyrinic zirconium metal-organic framework PCN-224-Cu for CO2 conversion to alcohols. J. Mater. Chem. A, 2021, 9: 24510-24516.
(18) 亓士超, 孙林兵,* 林 陵, 陈日志, 李卫星, 刘晓勤. 新工科引领的化工工艺课程教学改革创新. 化工高等教育, 2021, 38: 93-97.
(19) D. M. Xue, W. J. Zhang, X. Q. Liu, S. C. Qi,* L. B. Sun.* Fabrication of azobenzene-functionalized porous polymers for selective CO2 capture. Chinese J. Chem. Eng., 2021, 43: 24-30.
(20) S. C. Qi, G. X. Yu, D. M. Xue, X. Liu, X. Q. Liu,* L. B. Sun.* Rigid supramolecular structures based on flexible covalent bonds: A fabrication mechanism of porous organic polymers and their CO2 capture properties. Chem. Eng. J., 2020, 385: 123978.
(21) S. C. Qi, D. M. Xue, G. X. Yu, R. R. Zhu, X. Q. Liu, L. B. Sun.* An antiempirical strategy: sacrificing aromatic moieties in the polymer precursor for improving the properties of the derived N-doped porous carbons. Green Chem. Eng., 2020, 1: 70-76.
(22) 亓士超, 朱蓉蓉, 刘昕, 薛丁铭, 刘晓勤, 孙林兵.* 乙二胺不同掺杂模式下多孔有机聚合物对CO2的吸附. 化工学报, 2020, 71: 1666-1675.
(23) Y. C. Lou,† S. C. Qi,† D. M. Xue, C. Gu, R. Zhou, X. Q. Liu, L. B. Sun.* Solvent-free synthesis of N-containing polymers with high cross-linking degree to generate N-doped porous carbons for high-efficiency CO2 capture. Chem. Eng. J., 2020, 399: 125845.