| Literature DB >> 32241943 |
Byung Hyo Kim1,2, Junyoung Heo1,2, Sungin Kim1,2, Cyril F Reboul3,4, Hoje Chun5, Dohun Kang1,2, Hyeonhu Bae6, Hyejeong Hyun7, Jongwoo Lim7, Hoonkyung Lee6, Byungchan Han5, Taeghwan Hyeon1,2, A Paul Alivisatos8,9,10, Peter Ercius11, Hans Elmlund12,4, Jungwon Park13,2.
Abstract
Precise three-dimensional (3D) atomic structure determination of individual nanocrystals is a prerequisite for understanding and predicting their physical properties. Nanocrystals from the same synthesis batch display what are often presumed to be small but possibly important differences in size, lattice distortions, and defects, which can only be understood by structural characterization with high spatial 3D resolution. We solved the structures of individual colloidal platinum nanocrystals by developing atomic-resolution 3D liquid-cell electron microscopy to reveal critical intrinsic heterogeneity of ligand-protected platinum nanocrystals in solution, including structural degeneracies, lattice parameter deviations, internal defects, and strain. These differences in structure lead to substantial contributions to free energies, consequential enough that they must be considered in any discussion of fundamental nanocrystal properties or applications.Entities:
Year: 2020 PMID: 32241943 DOI: 10.1126/science.aax3233
Source DB: PubMed Journal: Science ISSN: 0036-8075 Impact factor: 47.728