个人简介
江耀,博士,副教授,硕士生导师。2019年博士毕业于南京工业大学化学工程专业,之后分别在美国University of South Florida和南京工业大学从事博士后研究工作,于2021年年底加入合肥工业大学化学与化工学院,受聘“黄山学者”学术骨干。目前主要研究领域包括新型多孔材料的设计与可控构筑(包括MOFs, MOCs, COFs和POPs等的)、新型碳捕集技术(包括新型有机胺碳捕集剂的开发与碳捕集过程研究等)与智能吸附分离技术(包括吸附法二氧化碳捕集、烷烃/烯烃/炔烃/稀有气体的分离与纯化、水污染净化与修复等)。迄今为止,在化工和材料类知名期刊上总计发表SCI学术论文50余篇,其中以第一或通讯作者身份在Acc. Chem. Res.,J. Am. Chem. Soc.,Angew. Chem. Int. Ed.和AIChE J.等期刊上发表SCI学术论文20余篇。主持国家自然科学基金青年基金项目、中央高校基本科研业务项目、国家重点实验室开放项目和企业委托项目等科研项目8项。目前主要承担本科生《化工原理》、《化工设备机械基础》、《化工原理课程设计》和研究生《高等分离工程》等课程教学。近年来多次指导本科生大创、挑战杯和实验大赛并获得荣誉,多次指导本科生参加全国化工实验大赛并获得全国特等奖和赛区特等奖、一等奖等。
硕士生招生方向:化学工程与技术,学术硕士;化学工程、材料与化工,专业硕士
Email:yjiang@hfut.edu.cn
已发表学术论文目录:
55. Xu, Mingming; Wang, Kang; Zheng, Dongdong; Li, Mo; Xu, Fei; Cui, Peng; Jiang, Yao*, An adenine-based metal-organic framework with tailored pore environment for adsorption separation of C2H2 from C2H4 and CO2. Sep. Purif. Technol. 2025, 354, 128454.
54.Zheng, Songtao; Jia, Shaojun; Wu, Yan; Wang, Qi; Jiang, Yao*; Cui, Peng, Insights into the impact of trace SO2 on amine absorbents for chemical absorption of CO2. Ind. Eng. Chem. Res. 2025, 64(3), 1752-1761.
53.Wu, Yan; Qian, Jun; Jiang, Yao*; Jia, Shaojun; Xu, Xin; Cui, Peng, 2-Hydroxypropyl-diethylenetriamine (HPDETA)-based nonaqueous absorbents for energy-efficient CO2 capture with high stability and low corrosivity. Sep. Purif. Technol. 2025, 354, 128819.
52. Peng, Ling; Hu, Ziyan; Cui, Jiejie; Yang, Nina; Bao, Rui; Dai, Yizeng; Wang, Qi; Jiang, Yao*; Cui, Peng, Tailoring of a chitosan-based adsorbent with target-specific sites for efficient adsorption-reduction of chromium ion pollutant. Sep. Purif. Technol. 2025, 360, 131055.
51.Chen, Wu; Jia, Shaojun; Huang, Jin; Li, Yi; Wang, Qi; Liu, Xiao-Qin; Jiang, Yao*; Cui, Peng, Propanediamine-based absorbents with functionalized hydroxypropyl for efficient CO2 capture via intramolecular synergy. Sep. Purif. Technol. 2025, 361, 131353.
50. Zheng, Songtao; Jiang, Yao*; Jia, Shaojun; Wu, Yan; Cui, Peng, Effect of the presence of trace sulfur dioxide on piperazine-based amine absorbents for carbon dioxide capture. Chin. J. Chem. Eng. 2024, 73, 34-41.
49.Zhang, Yin; Guo, Jun; VanNatta, Peter; Jiang, Yao; Phipps, Joshua; Roknuzzaman, Roknuzzaman; Rabaâ, Hassan; Tan, Kui; AlShahrani, Thamraa; Ma, Shengqian, Metal-Free Heterogeneous Asymmetric Hydrogenation of Olefins Promoted by Chiral Frustrated Lewis Pair Framework. J. Am. Chem. Soc. 2024, 146(1), 979-987.
48.Wu, Yan; Qian, Jun; Jiang, Yao*; Jia, Shaojun; Xu, Xin; Liu, Xiao-Qin; Cui, Peng, Target-specific modification of diethylenetriamine with hydroxyalkyls: efficient absorbents for CO2 capture. Sep. Purif. Technol. 2024, 335, 126075.
47.Wang, Kang; Jiang, Yao*; Xu, Mingming; Zheng, Dongdong; Jia, Shaojun; Cui, Peng, Tailoring a MOF-based adsorbent with partitioned aliphatic pore spaces for efficient CH4 purification from natural gas. AIChE J. 2024, 70(7), e18443.
46. Jiang, Yao*#; Yang, Tao#; Liu, Xiao-Qin; Cui, Peng; Sun, Lin-Bing, A metal–organic cage with light-switchable motifs for controllable CO2 adsorption. J. Mater. Chem. A 2024, 12(2), 892-898.
45. Jia, Shaojun; Jiang, Yao*; Zheng, Songtao; Li, Yi; Wu, Yan; Liu, Xiao-Qin; Cui, Peng, Highly efficient capture of CO2 through the synergy of intramolecular amines within piperazine-derived alcoholamines. AIChE J. 2024, 70(6), e18439.
44. Jia, Shaojun; Jiang, Yao*; Li, Yi; Chen, Wu; Huang, Jin; Wang, Kang; Liu, Xiao-Qin; Cui, Peng, Synergy between electron donor and steric hindrance in alkylated-piperazine absorbents for efficient CO2 capture. Chem. Eng. J. 2024, 493, 152561.
43. Huang, Jin; Jia, Shaojun; Chen, Wu; Wang, Qi; Jiang, Yao*; Cui, Peng, n-Butanol-regulated phase separation of aminoethylethanolamine (AEEA) as an efficient absorbent for CO2 capture. Ind. Eng. Chem. Res. 2024, 63(47), 20688-20696.
42. Zhang, Yin; Jiang, Yao; Nafady, Ayman; Tang, Zhiyong; Al-Enizi, Abdullah M.; Tan, Kui; Ma, Shengqian, Incorporation of Chiral Frustrated Lewis Pair into Metal–Organic Framework with Tailored Microenvironment for Heterogeneous Enantio- and Chemoselective Hydrogenation. ACS Central Science 2023, 9(8), 1692-1701.
41. Jiang, Yao*; Xu, Mingming; Wang, Kang; Yang, Tao; Jia, Shaojun; Liu, Xiao-Qin; Cui, Peng; Sun, Lin-Bing, Target-specific isolation of light-switchable metal-organic cages within metal-organic frameworks for tunable CO2 adsorption. Inorg. Chem. Front. 2023, 10(15), 4435-4441.
40. Tan, Peng#; Jiang, Yao#; Wu, Qiurong; Gu, Chen; Qi, Shichao; Zhang, Qiang; Liu, Xiaoqin; Sun, Linbing, Light-responsive adsorbents with tunable adsorbent–adsorbate interactions for selective CO2 capture. Chin. J. Chem. Eng. 2022, 42, 104-111.
39. Peng, Song-Song; Shao, Xiang-Bin; Li, Yu-Xia; Jiang, Yao; Gu, Chen; Dinker, Manish Kumar; Liu, Xiao-Qin; Sun, Lin-Bing, Rational fabrication of ordered porous solid strong bases by utilizing the inherent reducibility of metal-organic frameworks. Nano Research 2022, 15(4), 2905-2912.
38. Jiang, Yao; Tan, Peng; Liu, Xiao-Qin; Sun, Lin-Bing, Process-oriented smart adsorbents: tailoring the properties dynamically as demanded by adsorption/desorption. Acc. Chem. Res. 2022, 55(1), 75-86.
37. Jiang, Yao*; Jia, Shaojun; Liu, Xiao-Qin; Cui, Peng; Sun, Lin-Bing, Selective adsorption of ethane over ethylene through a metal-organic framework bearing dense alkyl groups. Sep. Purif. Technol. 2022, 295, 121330.
36. Gu, Chen; Weng, Wenqiang; Lu, Cong; Tan, Peng; Jiang, Yao; Zhang, Qiang; Liu, Xiaoqin; Sun, Linbing, Decorating MXene with tiny ZIF-8 nanoparticles: An effective approach to construct composites for water pollutant removal. Chin. J. Chem. Eng. 2022, 42, 42-48.
35. Gu, Chen; Li, Tian-Tian; Tan, Peng; Peng, Song-Song; Jiang, Yao; Liu, Xiao-Qin; Sun, Lin-Bing, Generating strongly basic sites on magnetic nano-stirring bars: Multifunctional integrated catalysts for transesterification reaction. Sci. China Mater. 2022, 65, 2721-2728.
34. Jiang, Yao; Tan, Peng; Qi, Shi-Chao; Gu, Chen; Peng, Song-Song; Wu, Fan; Liu, Xiao-Qin; Sun, Lin-Bing, Breathing metal-organic polyhedra controlled by light for carbon dioxide capture and liberation. CCS Chem. 2021, 3(6), 1659-1668.
33. Tan, Peng; Jiang, Yao; Qi, Shi-Chao; Gao, Xia-Jun; Liu, Xiao-Qin; Sun, Lin-Bing, Ce-Doped Smart Adsorbents with Photoresponsive Molecular Switches for Selective Adsorption and Efficient Desorption. Engineering 2020, 6(5), 569-576.
32. Shi, Li-Ying; Li, Yu-Xia; Xue, Ding-Ming; Tan, Peng; Jiang, Yao; Liu, Xiao-Qin; Sun, Lin-Bing, Fabrication of highly dispersed nickel in nanoconfined spaces of as-made SBA-15 for dry reforming of methane with carbon dioxide. Chem. Eng. J. 2020, 390, 124491.
31. Qiu-Rong, Wu; Peng, Tan; Chen, Gu; Rui, Zhou; Shi-Chao, Qi; Xiao-Qin, Liu; Jiang, Yao; Lin-Bing, Sun, Smart adsorbents for CO2 capture: Making strong adsorption sites respond to visible light. Sci. China Mater. 2021, 64, 383-392.
30. Lu, Jie; Wu, Ju‐Kang; Jiang, Yao; Tan, Peng; Zhang, Lin; Lei, Yu; Liu, Xiao‐Qin; Sun, Lin‐Bing, Fabrication of Microporous Metal–Organic Frameworks in Uninterrupted Mesoporous Tunnels: Hierarchical Structure for Efficient Trypsin Immobilization and Stabilization. Angew. Chem., Int. Ed. 2020, 59(16), 6428-6434.
29. Jiang, Yao; Shi, Xiao-Chuan; Tan, Peng; Qi, Shi-Chao; Gu, Chen; Yang, Tao; Peng, Song-Song; Liu, Xiao-Qin; Sun, Lin-Bing, Controllable CO2 capture in metal-organic frameworks: making targeted active sites respond to light. Ind. Eng. Chem. Res. 2020, 59(50), 21894-21900.
28. Xie, Xiao-Yan; Wu, Fan; Liu, Xin; Tao, Wei-Qiang; Jiang, Yao; Liu, Xiao-Qin; Sun, Lin-Bing, Photopolymerization of metal–organic polyhedra: an efficient approach to improve the hydrostability, dispersity, and processability. Chem. Commun. 2019, 55(44), 6177-6180.
27. Wu, Ju-Kang; Tan, Peng; Lu, Jie; Jiang, Yao; Liu, Xiao-Qin; Sun, Lin-Bing, Fabrication of Photothermal Silver Nanocube/ZIF-8 Composites for Visible-Light-Regulated Release of Propylene. ACS Appl. Mater. Interfaces 2019, 11(32), 29298-29304.
26. Tan, Peng; Jiang, Yao; Liu, Xiao-Qin; Sun, Lin-Bing, Making Porous Materials Respond to Visible Light. ACS Energy. Lett. 2019, 4(11), 2656-2667.
25. Tan, Peng; Jiang, Yao; Liu, Xiaoqin; Sun, Linbing, Magnetically responsive porous materials for efficient adsorption and desorption processes. Chin. J. Chem. Eng. 2019, 27(6), 1324-1338.
24. Qi, Shi‐Chao; Qian, Xin‐Yu; He, Qiu‐Xia; Miao, Kang‐Jing; Jiang, Yao; Tan, Peng; Liu, Xiao‐Qin; Sun, Lin‐Bing, Generation of Hierarchical Porosity in Metal–Organic Frameworks by the Modulation of Cation Valence. Angew. Chem., Int. Ed. 2019, 58(30), 10104-10109.
23. Miao, Kang-Jing; He, Qiu-Xia; Li, Yu-Xia; Liu, Xiao-Qin; Jiang, Yao; Gu, Chen; Sun, Lin-Bing, Fabrication of Cu(I)-Functionalized MIL-101(Cr) for Adsorptive Desulfurization: Low-Temperature Controllable Conversion of Cu(II) via Vapor-Induced Reduction. Inorg. Chem. 2019, 58(16), 11085-11090.
22. Jiang, Yao; Tan, Peng; Qi, Shi‐Chao; Liu, Xiao‐Qin; Yan, Jia‐Hui; Fan, Fan; Sun, Lin‐Bing, Metal-organic frameworks with target‐specific active sites switched by photoresponsive motifs: efficient adsorbents for tailorable CO2 capture. Angew. Chem., Int. Ed. 2019, 58(20), 6600-6604.
21. Jiang, Yao; Park, Jinhee; Tan, Peng; Feng, Liang; Liu, Xiao-Qin; Sun, Lin-Bing; Zhou, Hong-Cai, Maximizing photoresponsive efficiency by isolating metal-organic polyhedra into confined nanoscaled spaces. J. Am. Chem. Soc. 2019, 141(20), 8221-8227.
20. Gu, Chen; Tao, Wei-Qiang; Li, Min; Jiang, Yao; Liu, Xiao-Qin; Tan, Peng; Sun, Lin-Bing, Fabrication of multifunctional integrated catalysts by decorating confined Ag nanoparticles on magnetic nanostirring bars. J. Colloid Interface Sci. 2019, 555, 315-322.
19. Tan, Peng; Xue, Ding‐Ming; Zhu, Jing; Jiang, Yao; He, Qiu‐Xia; Hou, ZhuFeng; Liu, Xiao‐Qin; Sun, Lin‐Bing, Hierarchical N‐doped carbons from designed N‐rich polymer: Adsorbents with a record‐high capacity for desulfurization. AIChE J. 2018, 64(11), 3786-3793.
18. Tan, Peng; Jiang, Yao; Sun, Lin-Bing; Liu, Xiao-Qin; AlBahily, Khalid; Ravon, Ugo; Vinu, Ajayan, Design and fabrication of nanoporous adsorbents for the removal of aromatic sulfur compounds. J. Mater. Chem. A 2018, 6(47), 23978-24012.
17. Liu, Wei; Zhu, Li; Jiang, Yao; Liu, Xiao-Qin; Sun, Lin-Bing, Direct fabrication of strong basic sites on ordered nanoporous materials: Exploring the possibility of metal–organic frameworks. Chem. Mater. 2018, 30(5), 1686-1694.
16. Huang, Li; Xing, Zhi-Min; Kou, Yu; Shi, Li-Ying; Liu, Xiao-Qin; Jiang, Yao; Sun, Lin-Bing, Fabrication of rhodium nanoparticles with reduced sizes: An exploration of confined spaces. Ind. Eng. Chem. Res. 2018, 57(10), 3561-3566.
15. Cheng, Lei; Jiang, Yao; Qi, Shi-Chao; Liu, Wei; Shan, Shu-Feng; Tan, Peng; Liu, Xiao-Qin; Sun, Lin-Bing, Controllable adsorption of CO2 on smart adsorbents: an interplay between amines and photoresponsive molecules. Chem. Mater. 2018, 30(10), 3429-3437.
14. Xing, Zhi-Min; Gao, Yu-Xia; Shi, Li-Ying; Liu, Xiao-Qin; Jiang, Yao; Sun, Lin-Bing, Fabrication of gold nanoparticles in confined spaces using solid-phase reduction: Significant enhancement of dispersion degree and catalytic activity. Chem. Eng. Sci. 2017, 158, 216-226.
13. Li, Xing-Yang; Jiang, Yao; Liu, Xiao-Qin; Shi, Li-Ying; Zhang, Dong-Yuan; Sun, Lin-Bing, Direct synthesis of zeolites from a natural clay, attapulgite. ACS Sustainable Chem. Eng. 2017, 5(7), 6124-6130.
12. Kang, Ying-Hu; Yan, Ni; Gao, Zhen-Yu; Tan, Peng; Jiang, Yao; Liu, Xiao-Qin; Sun, Lin-Bing, Controllable construction of metal–organic polyhedra in confined cavities via in situ site-induced assembly. J. Mater. Chem. A 2017, 5(11), 5278-5282.
11. Jiang, Yao; Shan, Shu-Feng; Liu, Wei; Zhu, Jing; He, Qiu-Xia; Tan, Peng; Cheng, Lei; Liu, Xiao-Qin; Sun, Lin-Bing, Rational design of thermo-responsive adsorbents: demand-oriented active sites for the adsorption of dyes. Chem. Commun. 2017, 53(69), 9538-9541.
10. He, Qiu-Xia; Jiang, Yao; Tan, Peng; Liu, Xiao-Qin; Qin, Ju-Xiang; Sun, Lin-Bing, Controlled construction of supported Cu+ sites and their stabilization in MIL-100 (Fe): efficient adsorbents for benzothiophene capture. ACS Appl. Mater. Interfaces 2017, 9(35), 29445-29450.
9. Zhu, Jing; Tan, Peng; Yang, Piao-Ping; Liu, Xiao-Qin; Jiang, Yao; Sun, Lin-Bing, Smart Adsorbents with Reversible Photo-Regulated Molecular Switches for Selective Adsorption and Efficient Regeneration. Chem. Commun. 2016, 52(77), 11531-11534.
8. Tan, Peng; Li, Yan-Hua; Liu, Xiao-Qin; Jiang, Yao; Sun, Lin-Bing, Core–Shell AgCl@SiO2 Nanoparticles: Ag(I)-Based Antibacterial Materials With Enhanced Stability. ACS Sustainable Chem. Eng. 2016, 4(6), 3268-3275.
7. Tan, Peng; Jiang, Yao; Liu, Xiao-Qin; Zhang, Dong-Yuan; Sun, Lin-Bing, Magnetically responsive core–shell Fe3O4@ C adsorbents for efficient capture of aromatic sulfur and nitrogen compounds. ACS Sustainable Chem. Eng. 2016, 4(4), 2223-2231.
6. Qin, Ju-Xiang; Tan, Peng; Jiang, Yao; Liu, Xiao-Qin; He, Qiu-Xia; Sun, Lin-Bing, Functionalization of metal–organic frameworks with cuprous sites using vapor-induced selective reduction: efficient adsorbents for deep desulfurization. Green Chem. 2016, 18(11), 3210-3215.
5. Kang, Ying-Hu; Liu, Xiao-Dan; Yan, Ni; Jiang, Yao; Liu, Xiao-Qin; Sun, Lin-Bing; Li, Jian-Rong, Fabrication of Isolated Metal-Organic Polyhedra in Confined Cavities: Adsorbents/Catalysts with Unusual Dispersity and Activity. J. Am. Chem. Soc. 2016, 138(19), 6099-6102.
4. Jiang, Yao; Tan, Peng; Kang, Ying‐Hu; Xing, Zhi‐Min; Cheng, Lei; Zhu, Li; Liu, Xiao‐Qin; Sun, Lin‐Bing, Fabrication of adsorbents with thermocontrolled molecular gates for both selective adsorption and efficient regeneration. Adv. Mater. Interfaces 2016, 3(11), 1500829.
3. Jiang, Yao; Tan, Peng; Cheng, Lei; Shan, Shu-Feng; Liu, Xiao-Qin; Sun, Lin-Bing, Selective adsorption and efficient regeneration via smart adsorbents possessing thermo-controlled molecular switches. Phys. Chem. Chem. Phys. 2016, 18(15), 9883-9887.
2. Cheng, Lei#; Jiang, Yao#; Yan, Ni; Shan, Shu-Feng; Liu, Xiao-Qin; Sun, Lin-Bing, Smart adsorbents with photoregulated molecular gates for both selective adsorption and efficient regeneration. ACS Appl. Mater. Interfaces 2016, 8(35), 23404-23411.
1. Sun, Lin-Bing; Kang, Ying-Hu; Shi, Yao-Qi; Jiang, Yao; Liu, Xiao-Qin, Highly Selective Capture of the Greenhouse Gas CO2 in Polymers. ACS Sustainable Chem. Eng. 2015, 3(12), 3077-3085.