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We present Al2O3-ZnAl2O4-ZnO nanostructure, which could be a prominent candidate for optoelectronics, mechanical and sensing applications. While ZnO and ZnAl2O4 composites are mostly synthesized by sol-gel technique, we propose a…

This paper deals with the investigations on the nucleation and growth of ZnO nanostructures in a catalyst free synthesis. The ZnO nanostructures have been formed by evaporation of Zn (99.99%) in O_2 and Ar atmosphere in single zone furnace…

材料科学 · 物理学 2007-05-23 Jai Singh , Anchal Srivastava , R. S. Tiwari , O. N. Srivastava

Cuprous oxide (Cu2O) nanowires were grown by a simple, catalyst-free thermal oxidation method starting from a copper foil substrate. Wire growth was performed at different conditions by varying oxygen partial pressure and heating…

材料科学 · 物理学 2011-01-31 Qilin Gu , B. Wang

Large-scale CuO nanowires are commonly synthesized by the thermal oxidation method. However, the growth mechanism remains controversial between diffusion growth mechanism and vapor-solid (VS) growth mechanism. In this study, we investigated…

介观与纳米尺度物理 · 物理学 2021-12-24 Lilin Xie , Yoshifumi Oshima , Xiaona Zhang

ZnO is a promising material for the fabrication of light emitting devices. One approach to achieve this goal is to use ZnO nanorods because of their expected high crystalline and optical quality. Catalyst free growth of nanorods by…

Controlling the growth of zinc oxide nanowires is necessary to optimize the performances of nanowire-based devices such as photovoltaic solar cells, nano-generators, or light-emitting diodes. In this view, we investigate the nucleation and…

Semiconductor nanowires are promising material systems for coming of age nanotechnology. The usage of the vapor solid solid (VSS) route, where the catalyst used for promoting axial growth of nanowire is a solid, offers certain advantages…

介观与纳米尺度物理 · 物理学 2021-11-22 Carina B. Maliakkal , Marcus Tornberg , Daniel Jacobsson , Sebastian Lehmann , Kimberly A. Dick

Manipulation of surface architecture of semiconducting nanowires with a control in surface polarity is one of the important objectives for nanowire based electronic and optoelectronic devices for commercialization. We report the growth of…

化学物理 · 物理学 2015-09-01 Avinash Patsha , S. Amirthapandian , Ramanathaswamy Pandian , S. Dhara

Growth of mono-dispersed AlGaN nanowires of ternary wurtzite phase is reported using chemical vapour deposition technique in the vapour-liquid-solid process. The role of distribution of Au catalyst nanoparticles on the size and the shape of…

Self assembled AlN nanowires (NWs) are grown by plasma assisted molecular beam epitaxy (PAMBE) on SiO2 / Si (111) substrates. Using a combination of in-situ reflective high energy electron diffraction and ex situ X ray diffraction (XRD), we…

材料科学 · 物理学 2024-02-02 Ž. Gačević , J. Grandal , Q. Guo , R. Kirste , M. Varela , Z. Sitar , M. A. Sánchez García

Compound semiconducting nanowires are promising building blocks for several nanoelectronic devices yet the inability to reliably control their growth morphology is a major challenge. Here, we report the Au-catalyzed vapor-liquid-solid (VLS)…

介观与纳米尺度物理 · 物理学 2013-05-20 Zheng Ma , Dillon McDowell , Eugen Panaitescu , Albert V. Davidov , Moneesh Upmanyu , Latika Menon

We study in this paper the atomic mechanisms of nanorod growth and propose the way of diameter selection of nanorod. A characteristic radius is demonstrated to be crucial in nanorod growth, which increases proportional to one fifth power of…

介观与纳米尺度物理 · 物理学 2010-03-01 Da-Jun Shu , Xiang Xiong , Zhao-Wu Wang , Zhenyu Zhang , Mu Wang , Nai-Ben Ming

New insights into controlling nanowire merging phenomena are demonstrated in growth of thin ZnO nanowires using monodispersed Au colloidal nanoparticles as catalyst. Both nanowire diameter and density were found to be strongly dependent on…

介观与纳米尺度物理 · 物理学 2015-06-24 Liangchen Zhu , Matthew R. Phillips , Cuong Ton-That

We have combined the benefits of two catalytic growth phenomena to form nanostructures of transition metal trichalcogenides (TMTs), materials that are challenging to grow in a nanostructured form by conventional techniques, as required to…

InAs nanowires were grown on GaAs substrates by the Au-assisted vapour-liquid-solid (VLS) method in a gas source molecular beam epitaxy (GS-MBE) system. Passivation of the InAs nanowires using InP shells proved difficult due to the tendency…

材料科学 · 物理学 2012-03-27 C. M. Haapamaki , J. Baugh , R. R. LaPierre

Vapor-liquid-solid (VLS) route and its variants are routinely used for scalable synthesis of semiconducting nanowires yet the fundamental growth processes remain unknown. Here, we employ atomic-scale computations based on model potentials…

材料科学 · 物理学 2015-06-15 Hailong Wang , Luis A. Zepeda-Ruiz , George H. Gilmer , Moneesh Upmanyu

Growth of GaN nanowires are carried out via metal initiated vapor-liquid-solid mechanism, with Au as the catalyst. In chemical vapour deposition technique, GaN nanowires are usually grown at high temperatures in the range of 900-1100 ^oC…

材料科学 · 物理学 2015-09-01 Kishore K. Madapu , S. Dhara , S. Amirthapandian , S. Polaki , A. K. Tyagi

The influence of the oxide in Ga-assisted growth of GaAs nanowires on Si substrates is investigated. Three different types of oxides with different structure and chemistry are considered. We observe that the critical oxide thicknesses…

材料科学 · 物理学 2014-07-31 F. Matteini , G. Tutuncuoglu , D. Rüffer , E. Alarcon-Llado , A. Fontcuberta i Morral

We study the molecular beam epitaxy of AlN nanowires between 950 and 1215 {\deg}C, well above the usual growth temperatures, to identify optimal growth conditions. The nanowires are grown by self-assembly on TiN(111) films sputtered onto…

Nanowire (NW) crystal growth via the vapour_liquid_solid mechanism is a complex dynamic process involving interactions between many atoms of various thermodynamic states. With increasing speed over the last few decades many works have…

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