상세 보기
Bypassing Lattice Registry: A Nonepitaxial Paradigm for Constructing Hierarchical Heteroarchitectures
- Xiong, Hui;
- Li, Mufan;
- Zhang, Xingyu;
- Yang, Dahai;
- Wu, Xianqi;
- ... Kim, Juyeong;
- 외 13명
WEB OF SCIENCE
0SCOPUS
0초록
Epitaxial growth is a cornerstone of crystalline material design, yet its rigid dependence on the lattice registry fundamentally restricts the structural and compositional diversity of accessible nanoarchitectures. Here, we report a generalizable nonepitaxial growth paradigm that bypasses these atomic-scale constraints to construct complex 3D hierarchical heteroarchitectures. Using real-time liquid-phase transmission electron microscopy (LPTEM) and cryogenic-EM, we directly visualize a nonclassical crystallization sequence on AuAg alloy nanowires. The process is initiated with the rapid formation and long-range directional attachment of amorphous PdCl62- agglomerations, governed by noncontact interaction forces rather than traditional lattice matching. This is followed by condensation-driven volume shrinkage and a discrete amorphous to crystalline phase transition. Molecular dynamics simulations corroborate that these dynamics are driven by agglomeration-surface interactions, decoupling crystal growth from substrate registry. Atomic-resolution 3D electron tomography reveals a core-shell framework characterized by a dense network of grain boundaries and internal porosity (0.9%). These structural features impart enhanced oxygen reduction reaction (ORR) activity, achieving a 3-fold higher mass activity than commercial Pt/C benchmarks and a high tolerance to methanol and CO poisoning. By establishing a synthesis platform that decouples crystal growth from lattice registry, this work offers a versatile route for the precise engineering of hierarchical materials and multifunctional heteroarchitectures.
키워드
- 제목
- Bypassing Lattice Registry: A Nonepitaxial Paradigm for Constructing Hierarchical Heteroarchitectures
- 저자
- Xiong, Hui; Li, Mufan; Zhang, Xingyu; Yang, Dahai; Wu, Xianqi; Cheng, Sheng; Xiang, Junlei; Fu, Yifan; Xiang, Hongfa; Ren, Jiaming; Wang, Yong; Ge, Binghui; Song, Chengyu; Han, Insung; Seong, Yeeun; Kim, Juyeong; Ou, Zihao; Zhang, Qiubo; Song, Xiaohui
- 발행일
- 2026-09
- 유형
- Article
- 저널명
- ACS Nano
- 권
- 20
- 호
- 36
- 페이지
- 24671 ~ 24684
- 언어
- ENG
- 출판사
- American Chemical Society
- 발행국가
- 미국
- 분량
- 14 페이지
- ISSN
- E 1936-086X
P 1936-0851