FACULTY

Faculty

At Westlake, we welcome talented people, outstanding scholars, research fellows, and young scientists from all backgrounds. We expect to have a community of 300 assistant, associate, and full professors (including chair professors), 600 research, teaching, technical support and administrative staff, and 900 postdoctoral fellows by 2026.

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Zhichang LIU, Ph.D.

Zhichang LIU, Ph.D.

Zhichang LIU, Ph.D.

School of Science

Chemistry

School of Science

联系

网站: https://liu.westlake.edu.cn

“The establishment of Westlake University has created many firsts in China\'s higher education. Through our continuous efforts, Westlake University will certainly be ranked among the best in the world.”

Biography

He received his PhD in polymer chemistry in 2010 with Professor Tien-Yau Luh from Shanghai Institute of Organic Chemistry, CAS. During the period from 2010 to 2018, he pursued research in Sir Fraser Stoddart’s group at Northwestern University as a Postdoctoral Fellow. In September 2018, he joined Westlake University as the first faculty in chemistry to start his independent academic career. To date, he has published 75 high profile scientific papers and been an inventor of 10 patents. For his research into the isolation of gold, he was the co-recipient of two prestigious Awards―the North America Chemical Engineering Project of the Year Award and the Highly Commended in Sustainable Technology Award for Innovation & Excellence―from the Institution of Chemical Engineers. Dr Liu is also the co-founder of a startup company—named Cycladex—which is focused on gold purification.

Research

His current research interests focus on the development of Molecular-Strain Engineering (MSE) and Supramolecular Organic Functional Assemblies (SOFA). MSE implies using strain to impose intramolecular tension on molecules, which, owing to their precisely tunable strained conformations, can exhibit enhanced performance in certain situations, such as the control of assembly processes, modulation of their own properties, and manipulation of reaction progress and selectivities. Projects in the Liu’s SOFA Lab involve (i) molecular-strain engineering of multi-walled Platonic solids, (ii) mechanical trapping of active intermediates employing molecular-strain engineering, and (iii) strain-modulated emergent properties of supramolecular assemblies as well as topological knots and links. Current application areas of interest include precisely-controllable and functional assembly of macrocycles, stimuli-responsive materials for eco-friendly settings, supramolecular catalysis, and energy conversion.”

Representative Publications

20.   Liu, J.; Wu, M.; Wu, L.; Liang, Y.; Tang, Z.-B.; Jiang, L.; Bian, L.; Liang, K.; Zheng, X.; Liu, Z.* “Infinite Twisted Polycatenanes” Angew. Chem. Int. Ed. 2023, e202314481.

19.   Jiang, L.; Peng, Z.; Liang, Y.; Tang, Z.-B.; Liang, K.; Liu, J.; Liu, Z.* “Strain-driven formal [1,3]-aryl shift within molecular bows” Angew. Chem. Int. Ed. 2023, 62, e202312238. (Hot Paper, Highlighted in Nature Synthesis)

18.   Liang, Y.;# Wang, S.;# Tang, M.; Wu, L.; Bian, L.; Jiang, L.; Tang, Z.-B.; Liu, J.; Guan, A.; Liu, Z.* “Cascade synthesis of benzotriazulene with three embedded azulene units and large stokes shifts” Angew. Chem. Int. Ed. 2023, 62, e202218839. (Highlighted in Chinese J. Org. Chem.)

17.   Wu, L.; Tang, M.; Jiang, L.; Chen, Y.; Bian, L.; Liu, J.; Wang, S.; Liang, Y.; Liu, Z.*  “ Synthesis of contra-helical trefoil knots with mechanically tuneable spin-crossover properties” Nat. Synth. 2023, 2, 17–25. (Cover, Highlighted in Chem, Sci. China Chem., and China Youth Daily, Featured in the Collection of One Year of Nature Synthesis)

16.   Bian, L.; Tang, M.; Liu, J.; Liang, Y.; Wu, L.; Liu, Z.*  “Luminescent chiral triangular prisms capable of forming double helices for detecting traces of acids and anion recognition” J. Mater. Chem. C 2022, 10, 15394–15399. (Featured in collections of 2022 Journal of Materials Chemistry C most popular articles and 2023 Journal of Materials Chemistry C Lunar New Year collection)

15.   Wang, S.; Tang, M.; Wu, L.; Bian, L.; Jiang, L.; Liu, J.; Tang, Z.-B.; Liang, Y.; Liu, Z.*  “Linear nonalternant isomers of acenes fusing multiple azulene units” Angew. Chem. Int. Ed. 2022, 61, e202205658.(Hot Paper, Highlighted in Synfacts and Chinese J. Org. Chem.)

14.   Bian, L.;# Liang, Y.;# Liu, Z.*  “Tetraphenylethylene-incorporated macrocycles and nanocages: Construction and applications” ACS Appl. Nano Mater. 2022, 5, 13940–13958.

13.   Tang, M.; Liang, Y.; Liu, J.; Wu, L.; Wang, S.; Bian, L.; Jiang, L.; Tang, Z.-B.; Liu, Z.*  “Mechanical trapping and in situ derivatization of the porpodimethene intermediate” Mater. Today Chem. 2022, 24, 100868.

12.   Tang, M.; Liang, Y.; Liu, J.; Bian, L.; Liu, Z.*  “Mechanical trapping of the phlorin intermediate” CCS Chem. 2022, 4, 3230–3237.

11.   Tang, M.; Liang, Y.; Lu, X.; Miao, X.; Jiang, L.; Liu, J.; Bian, L.; Wang, S.; Wu, L.; Liu, Z.* “Molecular-strain engineering of double-walled tetrahedra” Chem 2021, 7, 2160–2174. (Highlighted in Nature Chemistry, 入选2021年度Chem中国10篇精选论文)

10.   Liang, Y.;# Tang, M.;# Liu, Z.* “Molecular bows -- strained bow-shaped macrocycles” Chem. Lett. 2020, 49, 1329–1336. (Inside Cover, Invited Highlight Review).

9.   Wu, L.; Chen, Y.; Pei, J.; Tang, M.; Wang, S.; Liu, Z.*“Tetrahedron” Chin. J. Chem. 2019, 37, 834–842.

8.  Liu, Z.*; Frasconi, M.; Liu, W-G; Zhang, Y.; Dyar, S. M.; Shen, D.; Sarjeant, A. A.; Goddard, W. A., III; Wasielewski, M. R.; Stoddart, J. F.* “Mixed-valence superstructure assembled from a mixed-valence host-guest complex”J. Am. Chem. Soc. 2018, 140,9387–9391.

7.  Liu, Z.; Frasconi, M.; Lei, J.; Brown, Z. J.; Zhu, Z.; Cao, D.; Iehl, J.; Liu, G.; Fahrenbach, A. C.; Botros, Y. Y.; Farha, O. K.; Hupp, J. T.; Mirkin, C. A.; Stoddart, J. F.* “Selective isolation of gold facilitated by second-sphere coordination with α-cyclodextrin” Nat. Commun.2013, 4,1855.

(Altmetric Score 143; Highlighted in > 700 news outlets including C&E News, Chemistry World, Nature Asia, Nature Middle East, BBC, Popular Science, Agence France-Presse, Science Daily, Huffington Post, and 参考消息; > 67,000 Page Views)

6. Liu, Z.; Nalluri, S. K. M.; Stoddart, J. F.* “Surveying macrocyclic chemistry: From flexible crown ethers to rigid cyclophanes”Chem. Soc. Rev. 2017, 46, 2459–2478. (Insider Front Cover)

5.  Sun, J.#; Liu, Z.*,#; Liu, W-G; Wu, Y.; Wang, Y.; Barnes, J. C.; Hermann, K. R.; Wasielewski, M. R.; Goddard, W. A., III; Stoddart, J. F.* “Mechanical bond-protected air-stable radicals” J. Am. Chem. Soc.2017, 139, 12704–12709. (Highlighted in Chemistry World)

4.  Liu, Z.; Samanta, A.; Lei, J.; Sun, J.; Wang, Y.; Stoddart, J. F.* “Cation-dependent gold recovery with α-cyclodextrin facilitated by second-sphere coordination” J. Am. Chem. Soc. 2016, 138, 11643–11653. (ACS Editors' Choice)

3.  Samanta, A.#; Liu, Z.#; Nalluri, S. K. M.; Zhang, Y.; Schatz, G. C.; Stoddart, J. F.* “Supramolecular double helix formation by diastereoisomeric conformations of configurationally enantiomeric macrocycles” J. Am. Chem. Soc.2016, 138, 14469–14480.

2.  Liu, Z.; Liu, G.; Wu, Y.; Cao, D.; Sun, J.; Schneebeli, S. T.; Mirkin, C. A.; Stoddart, J. F.* “Assembly of supramolecular nanotubes from molecular triangles and 1,2-dihalohydrocarbons”J. Am. Chem. Soc. 2014, 136, 16651–16660.

1.  Liu, Z.;# Lei, J.;# Frasconi, M.; Li, X.; Cao, D.; Zhu, Z.; Schneebeli, S. T.; Schatz, G. C.; Stoddart, J. F.* “A squareplanar tetracoordinate oxygen-containing Ti4O17 cluster stabilized by two 1,1′-ferrocenedicarboxylato ligands” Angew. Chem. Int. Ed.2014, 53, 9193−9197. 



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