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Inorganic Chemistry|December 15, 2018
Counteranion-Triggered and Excitation-Dependent Chemopalette Effect in a Supramolecular Dual-Emissive System Based on Cu<sub>3</sub>Pz<sub>3</sub>Shun-Ze Zhan, Wei Chen, Weigang Lu, et al.Chemistry (Weinheim an Der Bergstrasse, Germany)|August 7, 2008
Polymerizing cluster helicates into high-connectivity networksShun-Ze Zhan, Mian Li, Jin-Zhang Hou, et al.Dalton Transactions (Cambridge, England : 2003)|February 22, 2018
A luminescent supramolecular Cu<sub>2</sub>I<sub>2</sub>(NH<sub>3</sub>)<sub>2</sub>-sandwiched Cu<sub>3</sub>(pyrazolate)<sub>3</sub> adduct as a temperature sensorShun-Ze Zhan, Xia Jiang, Ji Zheng, et al.Chemical Communications (Cambridge, England)|September 6, 2011
When Cu4I4 cubane meets Cu3(pyrazolate)3 triangle: dynamic interplay between two classical luminophores functioning in a reversibly thermochromic coordination polymerShun-Ze Zhan, Mian Li, Xiao-Ping Zhou, et al.Chemical Communications (Cambridge, England)|April 13, 2022
Regioisomeric core-shell cuprofullerene C<sub>60</sub>@Cu<sub>24</sub>You-Shi Guo, Shun-Ze Zhan, Jia-Jing Zhong, et al.Inorganic Chemistry|March 3, 2007
From encapsulation to polypseudorotaxane: unusual anion networks driven by predesigned metal bis(terpyridine) complex cationsXiao-Ping Zhou, Wen-Xiu Ni, Shun-Ze Zhan, et al.Inorganic Chemistry|July 1, 2022
A 1D Mixed-Valence Cuprofullerene Pyrazolate Polymer as a Semiconductor MaterialJia-Jing Zhong, Shun-Ze Zhan, Yanzhou Li, et al.Chemical Communications (Cambridge, England)|September 10, 2019
A luminescent edge-interlocked prismatic heteroleptic metallocage assembled through a ligand replacement reactionShun-Ze Zhan, Jing-Hong Li, Guo-Hui Zhang, et al.Journal of the American Chemical Society|June 19, 2014
Metallophilicity-driven dynamic aggregation of a phosphorescent gold(I)-silver(I) cluster prepared by solution-based and mechanochemical approachesWen-Xiu Ni, Yu-Min Qiu, Mian Li, et al.Journal of the American Chemical Society|May 2, 2012
A high-symmetry coordination cage from 38- or 62-component self-assemblyXiao-Ping Zhou, Jie Liu, Shun-Ze Zhan, et al.Pageof 3