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Programming One-Dimensional Open-Channel Superlattices with Edge-Bonding of Meta-DNA

delete2025-05-15
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PRE
AI
X
Xu Qin
李乐 cover
李乐 (Le Li)
陈晓亮 (Xiaoliang Chen)
C
Changmao Huang
J
Jiangbo Liu
W
Wenhe Ma
M
Meiyuan Qi
左小磊 (Xiaolei Zuo)
刘小果 cover
刘小果 (Xiaoguo Liu)
李明强 cover
李明强 (Mingqiang Li) *
DOI:10.1002/anie.202504223delete
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Abstract

Abstract

En 中文
The physicochemical properties of one-dimensional (1D) porous nanomaterials are fundamentally influenced by their channel geometrical and topological characteristics. However, synthesis of geometrically and topologically diversified 1D porous crystals spanning the mesoporous-to-macroporous range remains a significant challenge. Here, we present a universal strategy for constructing 1D open-channel superlattices through edge-to-edge assembly (edge-bonding) of DNA-sparsely modified meta-DNA (M-DNA). By programming the rigidity and length of sparsely distributed DNA bonds on M-DNA surfaces, we achieved long-range ordered assembly of triangular M-DNA 1D single-channel superlattice (3.7 +/- 1.2 mu m) with a macroporous structure. The generality of this approach was further demonstrated by assembling hexagonal M-DNA into 1D multi-channel superlattice (3.6 +/- 1.0 mu m) with a mesoporous structure, thereby reducing the pore size from 140 to 29 nm and the porosity from similar to 94.2 to similar to 87.5%. Furthermore, an ultrathin gold layer grown on the triangular M-DNA superlattice exhibited a similar to 3.3-fold enhancement in electrocatalytic activity compared to non-assembled triangular M-DNA, attributed to the increased surface area and narrower bandgap. This work broadens the design framework for porous crystals assembled via DNA nanotechnology and highlights their potential applications in catalysis, energy conversion, and beyond.
Keywords:
1D Open-channel superlattices
DNA nanotechnology
Edge-bonding
Meta-DNA
Self-assembly

Journal

Angewandte Chemie-International Edition cover
Angewandte Chemie-International Edition
IF:
16.9
Papers:
5.6W
Citations:
53.0W

Organization

S
shanghai jiao tong university
Scholars:
15.2W
Papers: 11.5W
Citations: 159
N
Northwest University
Scholars:
3.3K
Papers: 971
Citations: 158