Literature DB >> 29775282

Confined Liquid-Phase Growth of Crystalline Compound Semiconductors on Any Substrate.

Debarghya Sarkar, Wei Wang, Matthew Mecklenburg, Andrew J Clough, Matthew Yeung1, Chenhao Ren, Qingfeng Lin, Louis Blankemeier, Shanyuan Niu, Huan Zhao, Haotian Shi, Han Wang, Stephen B Cronin, Jayakanth Ravichandran, Mitul Luhar, Rehan Kapadia.   

Abstract

The growth of crystalline compound semiconductors on amorphous and non-epitaxial substrates is a fundamental challenge for state-of-the-art thin-film epitaxial growth techniques. Direct growth of materials on technologically relevant amorphous surfaces, such as nitrides or oxides results in nanocrystalline thin films or nanowire-type structures, preventing growth and integration of high-performance devices and circuits on these surfaces. Here, we show crystalline compound semiconductors grown directly on technologically relevant amorphous and non-epitaxial substrates in geometries compatible with standard microfabrication technology. Furthermore, by removing the traditional epitaxial constraint, we demonstrate an atomically sharp lateral heterojunction between indium phosphide and tin phosphide, two materials with vastly different crystal structures, a structure that cannot be grown with standard vapor-phase growth approaches. Critically, this approach enables the growth and manufacturing of crystalline materials without requiring a nearly lattice-matched substrate, potentially impacting a wide range of fields, including electronics, photonics, and energy devices.

Entities:  

Keywords:  controlled wetting of liquid metals; lateral heterojunction; non-epitaxial crystalline compound semiconductors; phase-controlled and far-from-equilibrium growth; templated liquid-phase growth

Year:  2018        PMID: 29775282     DOI: 10.1021/acsnano.8b01819

Source DB:  PubMed          Journal:  ACS Nano        ISSN: 1936-0851            Impact factor:   15.881


  1 in total

1.  Particle-Catalyst-Free Vapor-Liquid-Solid Growth of Millimeter-Scale Crystalline Compound Semiconductors on Nonepitaxial Substrates.

Authors:  Tian Li; Jingqi Feng; Li Liang; Wenyu Sun; Xinqi Wang; Jian Wu; Peng Xu; Mengxi Liu; Donglin Ma
Journal:  ACS Omega       Date:  2020-04-15
  1 in total

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