Large-Scale Synthesis of Vertically Aligned ZnO Hexagonal Nanotube-Rod Hybrids Using a Two-Step Growth Method

  • Kim, Seong Been
  • Kim, Sungwoong
  • Kwon, Sun Sang
  • Lee, Won Woo
  • Kim, Jin-Sang
  • ... Park, Won Il
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초록

Zn-polar (0001) surfaces are more chemically reactive than other surfaces of ZnO crystals and drive preferential anisotropic and asymmetric growth along the [0001] direction, which facilitates growth of c-axis oriented, one-dimensional ZnO nanostructures. Accordingly, capping the top (0001) surface of ZnO crystals can impede c-axis growth and thus serve to modulate growth habits. In this study, we generated vertically aligned ZnO hexagonal nanotube-rod (h-NTR) hybrids by modulating growth habits during a second-stage process. Electron microscopy studies revealed the formation of very thin (10-20nm) single-crystalline nanotube walls along the edges of underlying hexagonal rod tops capped with Si. In addition, spatially resolved investigation of ZnO h-NTR indicated an abrupt increase in the measured bandgap across rod-tube junctions, which was ascribed to a quantum confinement effect and Burstein-Moss effect of carriers within the very thin nanotube walls.

키워드

SURFACE POLARITYCATHODOLUMINESCENCENANOSTRUCTURESNANORODS
제목
Large-Scale Synthesis of Vertically Aligned ZnO Hexagonal Nanotube-Rod Hybrids Using a Two-Step Growth Method
저자
Kim, Seong BeenKim, SungwoongKwon, Sun SangLee, Won WooKim, Jin-SangPark, Won Il
DOI
10.1111/jace.12507
발행일
2013-11
유형
Article
저널명
Journal of the American Ceramic Society
96
11
페이지
3500 ~ 3503