Highly Stable Triangular Single‐Layer 2D Assemblies: Synthesis and Their Stimuli‐Responsive Elastic and Anisotropic Curling

Author:

Hao Yajiao1ORCID,Yu Lin1,Miyazawa Keisuke23,Zhang Shengrui1,Liu Mo1,Yu Zhongqi1,Liu Jun1,Yu Yang1,Li Song1,Xu Shujue1,Fukuma Takeshi23,Xiao‐An Zhang Sean1,Li Minjie1ORCID

Affiliation:

1. State Key Laboratory of Supramolecular Structure and Materials College of Chemistry Jilin University Changchun P. R. China

2. Faculty of Frontier Engineering Kanazawa University Kakuma-machi 920-1192 Kanazawa Japan

3. Nano Life Science Institute (WPI-NanoLSI) Kanazawa University Kakuma-machi 920-1192 Kanazawa Japan

Abstract

AbstractSynthesis of highly stable two‐dimensional single‐layer assemblies (SLAs) is a key challenge in supramolecular science, especially those with long‐range molecular order and well‐defined morphology. Here, thin (thickness <2 nm) triangular AuI‐thiolate SLAs with high thermo‐, solvato‐ and mechano‐ stability have been synthesized via a double‐ligand co‐assembly strategy. Furthermore, the SLAs show assembly‐level elastic and anisotropic deformation responses to external stimuli as a result of the long‐range anisotropic molecular packing, which provides SLAs with new application potentials in bio‐mimic nanomechanics.

Funder

National Natural Science Foundation of China

Publisher

Wiley

Subject

General Medicine

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