Mechanistic Transformation of CuI Nanoparticles Into Oxidation-Resistant 2D Copper Nanoplates

  • Han, Hyeuk Jin
  • Yang, Moon Young
  • Lee, Changsoo
  • Jin, Gangtae
  • Hart, James L.
  • 외 9명
Citations

WEB OF SCIENCE

1
Citations

SCOPUS

1

초록

Unconventional phase transformations reveal new crystallization mechanisms, yet direct observation of such pathways during nanoscale solution-phase synthesis remains challenging. This study uncovers an atypical growth process in which thermodynamically stable CuI nanoparticles (NPs) transform into high-energy 2D Cu plates. Using a combination of in situ transmission electron microscopy, ex situ structural analysis, and density functional theory calculations shows that the formation of structural defects induced by hexadecylamine and chloride ions facilitates the transformation by promoting surface iodine vacancies. The resulting Cu{111} nanoplates, with ultrathin thicknesses (approximate to 4 nm) and exceptionally high aspect ratios (approximate to 450), display enhanced oxidation resistance and long-term stability under ambient conditions. This resistance is attributed to the close-packed {111} facets, which suppress chemical oxidation even after extended exposure to air over 100 days. These findings provide new insights into non-classical crystallization pathways in metal nanomaterials and suggest a versatile approach for preparing oxidation-resistant, structurally defined Cu nanostructures.

키워드

crystallization mechanismdefect engineeringphase transformationELECTRODEPHOTOLUMINESCENCEGROWTHIODIDE
제목
Mechanistic Transformation of CuI Nanoparticles Into Oxidation-Resistant 2D Copper Nanoplates
저자
Han, Hyeuk JinYang, Moon YoungLee, ChangsooJin, GangtaeHart, James L.Mutheu, RabeccaLee, Hyung IlKim, Seo HyunJang, HanhwiKim, MinjoonJung, Yeon SikGoddard III, William A.Cha, Judy J.Choi, Chungseok
DOI
10.1002/smll.202508098
발행일
2026-01
유형
Article; Early Access
저널명
Small
22
1
페이지
\

파일 다운로드