兴奋剂
材料科学
分析化学(期刊)
掺杂剂
电子迁移率
拉曼光谱
钽
Crystal(编程语言)
肖特基二极管
光电子学
二极管
光学
化学
冶金
物理
色谱法
计算机科学
程序设计语言
作者
A. L.,Sai Charan Vanjari,Aditya K. Bhat,Usman Ul Muazzam,James W. Pomeroy,Matthew D. Smith,S. Moorthy Babu,Martin Kuball
标识
DOI:10.1021/acsaelm.4c01857
摘要
Doping and electron mobility play crucial roles in determining the conductivity of β-Ga2O3 single-crystal substrates. This work proposes tantalum (Ta) as an effective n-type dopant, presenting it as an alternative to the more conventionally used tin (Sn) in β-Ga2O3 substrates. Single crystals of β-Ga2O3 doped with 0.05 mol % Sn and Ta are grown using the optical floating zone technique. Structural and optical analyses revealed superior crystal quality for Ta-doped β-Ga2O3 grown compared to Sn-doped crystals in the studied materials. Both types of doped crystals exhibit a high optical transparency and a band gap close to 4.7 eV. With the same amount of source material in the melt, Raman analysis shows a higher incorporation of Ta atoms into the β-Ga2O3 lattice than that of Sn, a finding further validated by inductively coupled plasma optical emission spectroscopy (ICP-OES) analysis. A Hall mobility of 138 cm2/(V s) is determined for Ta-doped β-Ga2O3 substrates at a carrier concentration of 7 × 1017 cm–3, which is one of the highest reported values for melt-grown β-Ga2O3 substrates. Vertical Schottky barrier diodes on Ta-doped substrates exhibit a low specific on-resistance of 0.46 ± 0.03 mΩ-cm2, consistent with enhanced substrate conductivity.
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