Literature DB >> 34370459

Thermal Conductivity of β-Phase Ga2O3 and (AlxGa1-x)2o3 Heteroepitaxial Thin Films.

Yiwen Song1, Praneeth Ranga2, Yingying Zhang3, Zixuan Feng4, Hsien-Lien Huang5, Marco D Santia6, Stefan C Badescu6, C Ulises Gonzalez-Valle1, Carlos Perez1, Kevin Ferri7, Robert M Lavelle8, David W Snyder8, Brianna A Klein9, Julia Deitz9, Albert G Baca9, Jon-Paul Maria7, Bladimir Ramos-Alvarado1, Jinwoo Hwang5, Hongping Zhao4,5, Xiaojia Wang3, Sriram Krishnamoorthy2, Brian M Foley1, Sukwon Choi1.   

Abstract

Heteroepitaxy of β-phase gallium oxide (β-Ga2O3) thin films on foreign substrates shows promise for the development of next-generation deep ultraviolet solar blind photodetectors and power electronic devices. In this work, the influences of the film thickness and crystallinity on the thermal conductivity of (2̅01)-oriented β-Ga2O3 heteroepitaxial thin films were investigated. Unintentionally doped β-Ga2O3 thin films were grown on c-plane sapphire substrates with off-axis angles of 0° and 6° toward ⟨112̅0⟩ via metal-organic vapor phase epitaxy (MOVPE) and low-pressure chemical vapor deposition. The surface morphology and crystal quality of the β-Ga2O3 thin films were characterized using scanning electron microscopy, X-ray diffraction, and Raman spectroscopy. The thermal conductivities of the β-Ga2O3 films were measured via time-domain thermoreflectance. The interface quality was studied using scanning transmission electron microscopy. The measured thermal conductivities of the submicron-thick β-Ga2O3 thin films were relatively low as compared to the intrinsic bulk value. The measured thin film thermal conductivities were compared with the Debye-Callaway model incorporating phononic parameters derived from first-principles calculations. The comparison suggests that the reduction in the thin film thermal conductivity can be partially attributed to the enhanced phonon-boundary scattering when the film thickness decreases. They were found to be a strong function of not only the layer thickness but also the film quality, resulting from growth on substrates with different offcut angles. Growth of β-Ga2O3 films on 6° offcut sapphire substrates was found to result in higher crystallinity and thermal conductivity than films grown on on-axis c-plane sapphire. However, the β-Ga2O3 films grown on 6° offcut sapphire exhibit a lower thermal boundary conductance at the β-Ga2O3/sapphire heterointerface. In addition, the thermal conductivity of MOVPE-grown (2̅01)-oriented β-(AlxGa1-x)2O3 thin films with Al compositions ranging from 2% to 43% was characterized. Because of phonon-alloy disorder scattering, the β-(AlxGa1-x)2O3 films exhibit lower thermal conductivities (2.8-4.7 W/m·K) than the β-Ga2O3 thin films. The dominance of the alloy disorder scattering in β-(AlxGa1-x)2O3 is further evidenced by the weak temperature dependence of the thermal conductivity. This work provides fundamental insight into the physical interactions that govern phonon transport within heteroepitaxially grown β-phase Ga2O3 and (AlxGa1-x)2O3 thin films and lays the groundwork for the thermal modeling and design of β-Ga2O3 electronic and optoelectronic devices.

Entities:  

Keywords:  aluminum gallium oxide; gallium oxide; heteroepitaxy; thermal boundary conductance; thermal conductivity

Year:  2021        PMID: 34370459     DOI: 10.1021/acsami.1c08506

Source DB:  PubMed          Journal:  ACS Appl Mater Interfaces        ISSN: 1944-8244            Impact factor:   9.229


  1 in total

1.  Effect of extended defects on photoluminescence of gallium oxide and aluminum gallium oxide epitaxial films.

Authors:  Jacqueline Cooke; Praneeth Ranga; Jani Jesenovec; John S McCloy; Sriram Krishnamoorthy; Michael A Scarpulla; Berardi Sensale-Rodriguez
Journal:  Sci Rep       Date:  2022-02-25       Impact factor: 4.996

  1 in total

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