Kinetic Control and Trapping in the Supramolecular Polymerization of m-Terphenyl Bis-Urea Macrocycles

被引:2
作者
Wijesekera, Gamage Isuri P. [1 ]
Rushton, Isabella G. [1 ]
Samant, Vaibhavi A. [1 ]
Gbadamosi, Fahidat A. [1 ]
Islam, Md Faizul [1 ]
Smith, Mark D. [1 ]
Wetthasinghe, Shehani T. [1 ]
Garashchuk, Sophya [1 ]
Shimizu, Linda S. [1 ]
机构
[1] Univ South Carolina, Dept Chem & Biochem, Columbia, SC 29208 USA
基金
美国国家科学基金会;
关键词
supramolecular polymerization; kinetic trapping; hydrogen bonding; thermal hysteresis; self-assembly; m-terphenyl; POLYMERS; MECHANISM; EXCHANGE; CRYSTAL;
D O I
10.1002/chem.202404552
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Herein, we examine pathway complexity in the supramolecular polymerization of a novel m-terphenyl bis-urea macrocycle. Designed to induce kinetically metastable states, the macrocycle's concentration-dependent aggregation was studied via 1H NMR and IR spectroscopy in THF and CHCl3. Temperature-dependent UV-Vis spectroscopy in water/THF revealed a cooperative nucleation-growth mechanism, indicated by a shift in lambda max to longer wavelengths upon cooling. Morphological studies using DLS, AFM, and SEM demonstrated fibrous aggregate formation. Thermal hysteresis observed in assembly-disassembly cycles indicated kinetically trapped species, with cooling governed by kinetic control and heating by thermodynamic processes. Deviations in Delta H values during cooling, compared to van ' t Hoff analysis and alignment of heating Delta H values with thermodynamic predictions, reinforced this distinction. Spontaneous nucleation retardation, resulting from monomer trapping, led to lag times of up to 50 minutes under specific conditions. Computational studies revealed the parallel urea conformation as the more stable monomer configuration, whereas the antiparallel conformation is more stable in dimers. By probing pathway complexity of the macrocycle, we demonstrate a distinct ability to control and stabilize kinetically trapped states, broadening the scope for designing macrocyclic supramolecular polymers with tailored properties. This work deepens our understanding of supramolecular dynamics, exploring ON-pathway mechanisms and advancing tunable supramolecular materials.
引用
收藏
页数:11
相关论文
共 63 条
[1]   Supramolecular Polymers - we've Come Full Circle [J].
Aida, Takuzo ;
Meijer, E. W. .
ISRAEL JOURNAL OF CHEMISTRY, 2020, 60 (1-2) :33-47
[2]  
[Anonymous], 2019, APEX3 Version 2019.11-0 and SAINT+ Version 8.40B
[3]   Recent progress and future challenges in the supramolecular polymerization of metal-containing monomers [J].
Baeumer, Nils ;
Matern, Jonas ;
Fernandez, Gustavo .
CHEMICAL SCIENCE, 2021, 12 (37) :12248-12265
[4]   Conformational analysis and rotational barriers of alkyl- and phenyl-substituted urea derivatives [J].
Bryantsev, VS ;
Firman, TK ;
Hay, BP .
JOURNAL OF PHYSICAL CHEMISTRY A, 2005, 109 (05) :832-842
[5]   Dynamic supramolecular polymers built from cucurbit[n]urils and viologens [J].
Correia, Henrique Dias ;
Chowdhury, Shagor ;
Ramos, Ana Paula ;
Guy, Laure ;
Demets, Gregoire Jean-Francois ;
Bucher, Christophe .
POLYMER INTERNATIONAL, 2019, 68 (04) :572-588
[6]   Materials science - Supramolecular polymers [J].
de Greef, Tom F. A. ;
Meijer, E. W. .
NATURE, 2008, 453 (7192) :171-173
[7]   Supramolecular Polymerization [J].
De Greef, Tom F. A. ;
Smulders, Maarten M. J. ;
Wolffs, Martin ;
Schenning, Albert P. H. J. ;
Sijbesma, Rint P. ;
Meijer, E. W. .
CHEMICAL REVIEWS, 2009, 109 (11) :5687-5754
[8]   Simplified time-dependent density functional theory (sTD-DFT) for molecular optical rotation [J].
de Wergifosse, Marc ;
Seibert, Jakob ;
Grimme, Stefan .
JOURNAL OF CHEMICAL PHYSICS, 2020, 153 (08)
[9]   OLEX2: a complete structure solution, refinement and analysis program [J].
Dolomanov, Oleg V. ;
Bourhis, Luc J. ;
Gildea, Richard J. ;
Howard, Judith A. K. ;
Puschmann, Horst .
JOURNAL OF APPLIED CRYSTALLOGRAPHY, 2009, 42 :339-341
[10]   Supramolecular Polymers Constructed from Macrocycle-Based Host-Guest Molecular Recognition Motifs [J].
Dong, Shengyi ;
Zheng, Bo ;
Wang, Feng ;
Huang, Feihe .
ACCOUNTS OF CHEMICAL RESEARCH, 2014, 47 (07) :1982-1994