Amplification of chirality in surface-confined supramolecular bilayers

被引:0
作者
Hai Cao
Steven De Feyter
机构
[1] KU Leuven,Division of Molecular Imaging and Photonics, Department of Chemistry
来源
Nature Communications | / 9卷
关键词
D O I
暂无
中图分类号
学科分类号
摘要
One of the most dramatic effects of supramolecular assembly is the generation of homochirality in near-racemic systems. It is normally infeasible though to flip the absolute chirality of a molecule. Here we rationalize this seemingly contradictory chiral amplification mechanism with a combined scanning tunneling microscopy (STM) and modeling study of surface-grown enantiomerically unbalanced supramolecular bilayers. We identify a chemical equilibrium between opposite but not mirror-image-related twisting molecular geometries of the pure enantiomer, and accordingly two competing aggregation pathways. The nonlinear chiral amplification effect in bilayers of near-racemic mixtures involves the biased adsorption and organization of the majority enantiomer, and the compliance of the minority enantiomer to adopt an energetically less favorable twisting molecular conformation and handed organization. By establishing a direct link between molecular building block architectures and chiral amplification effect, this study provides a general approach to gain insight into cooperative supramolecular assembly in mixed enantiomer systems.
引用
收藏
相关论文
共 50 条
[31]   Hydrophobic chirality amplification in confined water cages [J].
Choong Eui Song ;
Si Joon Park ;
In-Soo Hwang ;
Min Jung Jung ;
So Young Shim ;
Han Yong Bae ;
Ji Yoon Jung .
Nature Communications, 10
[32]   Amplification of Chirality by Supramolecular Polymerization of Pyrene Oligomers [J].
Nussbaumer, Alina L. ;
Studer, Daniel ;
Malinovskii, Vladimir L. ;
Haener, Robert .
ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2011, 50 (24) :5490-5494
[33]   Surface-Confined Assemblies and Polymers for Molecular Logic [J].
de Ruiter, Graham ;
van der Boom, Milko E. .
ACCOUNTS OF CHEMICAL RESEARCH, 2011, 44 (08) :563-573
[34]   Specificity in the statics and dynamics of surface-confined ions [J].
Lyklema, J .
MOLECULAR PHYSICS, 2002, 100 (19) :3177-3185
[35]   Chiral enhancement via surface-confined supramolecular self-assembly at the electrified liquid/solid interface [J].
Stoian, Ioan-Adrian ;
Iacob, Bogdan-Cezar ;
Ramalho, Joao P. Prates ;
Marian, Iuliu O. ;
Bodoki, Ede ;
Oprean, Radu .
ELECTROCHIMICA ACTA, 2021, 387
[36]   Copper deposition in the presence of surface-confined additives [J].
Eliadis, ED ;
Nuzzo, RG ;
Gewirth, AA ;
Alkire, RC .
JOURNAL OF THE ELECTROCHEMICAL SOCIETY, 1997, 144 (01) :96-105
[37]   Surface-Confined Winding Assembly of Mesoporous Nanorods [J].
Zhao, Tiancong ;
Zhang, Xingmiao ;
Lin, Runfeng ;
Chen, Liang ;
Sun, Caixia ;
Chen, Qiwen ;
Hung, Chin-Te ;
Zhou, Qiaoyu ;
Lan, Kun ;
Wang, Wenxing ;
He, Zuyang ;
Zhang, Fan ;
Al-Khalaf, Areej Abdulkareem ;
Hozzein, Wael N. ;
Li, Xiaomin ;
Zhao, Dongyuan .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2020, 142 (48) :20359-20367
[38]   SURFACE-CONFINED ALLOY FORMATION IN IMMISCIBLE SYSTEMS [J].
TERSOFF, J .
PHYSICAL REVIEW LETTERS, 1995, 74 (03) :434-437
[39]   KINETIC MEASUREMENTS OF A SURFACE-CONFINED REDOX REACTION [J].
KOMORSKYLOVRIC, S ;
LOVRIC, M .
ANALYTICA CHIMICA ACTA, 1995, 305 (1-3) :248-255
[40]   Materials engineering for surface-confined flame retardancy [J].
Malucelli, Giulio ;
Carosio, Federico ;
Alongi, Jenny ;
Fina, Alberto ;
Frache, Alberto ;
Camino, Giovanni .
MATERIALS SCIENCE & ENGINEERING R-REPORTS, 2014, 84 :1-20