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Updated: Jan 8, 2026

Author Spotlight: Exploring Self-Assembled MOF-Polymer Composites
Published on: June 14, 2024
On-Surface Synthesis of Large-Scaled Kagome-Like Metal-Coordinated Framework and Polymerized Chains with
Xin Zhang1, Mengyuan Liu1, Xiaorui Chen2
1School of Physics and Information Technology, Shaanxi Normal University, Xi'an 710119, China.
Abstract:
Single-layer metal-organic framework (MOF) structures on solid surfaces, known as the surface MOF (SMOF), have attracted extensive interest in the past decade. However, preparing large-scale uniform and well-defined SMOF structures remains challenging. Herein, we used the phenylacetylene (PA) molecule as the building block to synthesize the two-dimensional (2D) Kagome-like SMOF, subsequently the cis-Cu-coordinated linear structure, and finally trans-polymerized chains on the Cu(111) surface. Characterized by cryogenic scanning tunneling microscopy (STM), noncontact atomic force microscopy (nc-AFM), and rationalized by first-principles calculations, the optimized structure and electronic bands of the Kagome-like SMOF, cis-coordinated linear structure, and polymerized chains were investigated. We clarified that the formation of the 2D Kagome-like SMOF is based on Cu-coordination reaction between the terminal acetylene group of PA molecules and the ortho-site of the phenyl ring, followed by self-assembly of PA-Cu-PA units on the Cu(111) surface. By further step-by-step postannealing, PA molecules undergo a series of surface reactions, transitioning to a well-defined Cu-coordinated cis-linear structure and finally developing into a trans-polymerized line structure. Our results demonstrate a stepwise approach for achieving linear polymerization by using surface metal coordination. Hybrid SMOF, linear coordinated chains, and linear polymer could lead to intriguing quantum states, giving rise to a variety of applications in future molecular devices.

