4.6 Article

Understanding the Anisotropy in the Electrical Conductivity of CuPtB-type Ordered GaInP Thin Films by Combining In Situ TEM Biasing and First Principles Calculations

期刊

ACS APPLIED ELECTRONIC MATERIALS
卷 4, 期 7, 页码 3478-3485

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acsaelm.2c00415

关键词

CuPtB ordering; GaInP thin film; DFT simulation; APDB; TEM biasing

资金

  1. Spanish Ministry of Science and Innovation [PID2019-106165GB-C21, RED2018-102609-T, RTI2018-094291- B-I00]
  2. Catalan Government [SGR776]
  3. ERDF (FEDER)
  4. Ministerio de Ciencia e Innovacion [BES-2017-080045]
  5. Spanish AEI [EQC2019-005701-P]
  6. MCIN

向作者/读者索取更多资源

The effect of CuPtB ordering on the optoelectronic properties of Ga0.5In0.5P was studied using in situ transmission electron microscopy measurements and density functional theory calculations. The presence of antiphase ordered domain boundaries and the anisotropy of the effective mass were found to contribute to the anisotropic electrical conductivity of CuPtB-type ordered GaInP thin films.
In this work, the effect of CuPtB ordering on the optoelectronic properties of Ga0.5In0.5P is studied by combining in situ transmission electron microscopy measurements and density functional theory (DFT) calculations. GaInP layers were grown by metal organic vapor phase epitaxy with a CuPtB single-variant-induced ordering due to the intentional misorientation of the Ge(001) substrate. Moreover, the degree of order was controlled using Sb as the surfactant without changing other growth parameters. The presence of antiphase ordered domain boundaries (APDBs) between the ordered domains is studied as a function of the order parameter. The in situ electrical measurements on a set of samples with controlled degree of order evidence a clear anisotropic electrical conductivity at the nanoscale between the [110] and [1-10] orientations, which is discussed in terms of the presence of APDBs as a function of the degree of order. Additionally, DFT calculations allow to determine the differences in the optoelectronic properties of the compound with and without ordering through the determination of the dielectric function. Finally, the anisotropy of the electrical conductivity for the ordered case is also discussed in terms of the effective mass calculated from the band structure on specific k-paths. By comparing the experimental measurements and the theoretical calculations, two factors have been presented as the main contributors of the electric conductivity anisotropy of CuPtB-type ordered GaInP thin films: antiphase boundaries that separate domains with uniform order (APDBs) and the anisotropy of the effective mass due to the alternating of In/Ga rich planes.

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