Optical and Photosensitive Properties of Flexible n (p)–InSe/In2O3 Heterojunctions

异质结 光致发光 材料科学 光敏性 拉曼光谱 紫外线 基质(水族馆) 兴奋剂 掺杂剂 光电子学 分析化学(期刊) 光学 化学 地质学 物理 海洋学 色谱法
作者
Veaceslav Sprincean,Liviu Leontie,Iuliana Caraman,Dumitru Untilă,Mihaela Gîrtan,Silviu Gurlui,Petru Lisnic,C. Doroftei,Aurelian Cârlescu,Felicia Iacomi,Mihail Caraman
出处
期刊:Materials [Multidisciplinary Digital Publishing Institute]
卷期号:15 (9): 3140-3140
标识
DOI:10.3390/ma15093140
摘要

In this work, optical, including photoluminescence and photosensitivity, characteristics of micrometer-sized flexible n (p)-InSe/In2O3 heterojunctions, obtained by heat treatment of single-crystalline InSe plates doped with (0.5 at.%) Cd (Sn), in a water-vapor- and oxygen-enriched atmosphere, are investigated. The Raman spectrum of In2O3 layers on an InSe:Sn substrate, in the wavelength range of 105-700 cm-1, contains the vibration band characteristic of the cubic (bcc-In2O3) phase. As revealed by EDX spectra, the In2O3 layer, ~2 μm thick, formed on InSe:Cd contains an ~18% excess of atomic oxygen. The absorption edge of InSe:Sn (Cd)/In2O3 structures was studied by ultraviolet reflectance spectroscopy and found to be 3.57 eV and ~3.67 eV for InSe:Cd and InSe:Sn substrates, respectively. By photoluminescence analysis, the influence of doping impurities on the emission bands of In2O3:Sn (Cd) was revealed and the energies of dopant-induced and oxygen-induced levels created by diffusion into the InSe layer from the InSe/In2O3 interface were determined. The n (p)-InSe/In2O3 structures display a significantly wide spectral range of photosensitivity (1.2-4.0 eV), from ultraviolet to near infrared. The influence of Cd and Sn concentrations on the photosensitivity and recombination of nonequilibrium charge carriers in n (p)-InSe layers from the heterojunction interface was also studied. The as-obtained nanosized InSe/In2O3 structures are suitable for optoelectronic applications.

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