Acta Optica Sinica, Volume. 43, Issue 20, 2004003(2023)
Preparation and Study of Ag Nanoparticles Composite Amorphous Gallium Oxide Photodetector
[1] Wang D, Wang X D, Ma H et al. Progress of doping in Ga2O3 materials[J]. Laser & Optoelectronics Progress, 58, 1516025(2021).
[2] Chen X, Liu K W, Zhang Z Z et al. Self-powered solar-blind photodetector with fast response based on Au/β-Ga2O3 nanowires array film Schottky junction[J]. ACS Applied Materials & Interfaces, 8, 4185-4191(2016).
[3] Wu G, Tang L B, Hao Q et al. Dual-band and high-responsivity ultraviolet detector based on Pt/GaN/AlGaN heterojunction[J]. Acta Optica Sinica, 43, 0304002(2023).
[4] Varshney U, Aggarwal N, Gupta G. Current advances in solar-blind photodetection technology: using Ga2O3 and AlGaN[J]. Journal of Materials Chemistry C, 10, 1573-1593(2022).
[5] Hou Y N, Mei Z X, Du X L. Semiconductor ultraviolet photodetectors based on ZnO and MgxZn1–xO[J]. Journal of Physics D: Applied Physics, 47, 283001(2014).
[6] Fan M M, Liu K W, Zhang Z Z et al. High-performance solar-blind ultraviolet photodetector based on mixed-phase ZnMgO thin film[J]. Applied Physics Letters, 105, 011117(2014).
[7] Lu Y J, Lin C N, Shan C X. Optoelectronic diamond: growth, properties, and photodetection applications[J]. Advanced Optical Materials, 6, 1800359(2018).
[8] Huang L, Feng Q, Han G Q et al. Comparison study of β-Ga2O3 photodetectors grown on sapphire at different oxygen pressures[J]. IEEE Photonics Journal, 9, 1-8(2017).
[9] Ji X Q, Yin X M, Yuan Y Z et al. Amorphous Ga2O3 Schottky photodiodes with high-responsivity and photo-to-dark current ratio[J]. Journal of Alloys and Compounds, 933, 167735(2023).
[10] Wang C, Zhang Y C, Fan W H et al. Effect of oxygen annealing temperature on properties of Ga2O3 thin films grown at room temperature by pulsed laser deposition[J]. Acta Optica Sinica, 42, 0831001(2022).
[11] Zhou C Q, Liu K W, Chen X et al. Performance improvement of amorphous Ga2O3 ultraviolet photodetector by annealing under oxygen atmosphere[J]. Journal of Alloys and Compounds, 840, 155585(2020).
[12] Heinemann M D, Berry J, Teeter G et al. Oxygen deficiency and Sn doping of amorphous Ga2O3[J]. Applied Physics Letters, 108, 022107(2016).
[13] Kuang D, Xu S A, Shi D W et al. High performance amorphous Ga2O3 thin film solar blind ultraviolet photodetectors decorated with Al nanoparticles[J]. Acta Physica Sinica, 72, 038501(2023).
[14] Zhao Z Q, Chu C S, Zhang G et al. Tuning the plasmonic resonance peak for Al nanorods on AlGaN layer to deep ultraviolet band[J]. IEEE Photonics Journal, 13, 4800107(2021).
[15] Shi X L, Liu H Y, Hou S et al. The applications of surface plasmons in Ga2O3 ultraviolet photodetector[J]. Opto-Electronic Engineering, 45, 85-92(2018).
[16] An Y H, Chu X L, Huang Y Q et al. Au plasmon enhanced high performance β-Ga2O3 solar-blind photo-detector[J]. Progress in Natural Science: Materials International, 26, 65-68(2016).
[17] Wang S L, Wu C, Wu F M et al. Flexible, transparent and self-powered deep ultraviolet photodetector based on Ag NWs/amorphous gallium oxide Schottky junction for wearable devices[J]. Sensors and Actuators A: Physical, 330, 112870(2021).
[18] Asanithi P, Chaiyakun S, Limsuwan P. Growth of silver nanoparticles by DC magnetron sputtering[J]. Journal of Nanomaterials, 2012, 1-8(2012).
[19] Cui S J, Mei Z X, Zhang Y H et al. Room-temperature fabricated amorphous Ga2O3 high-response-speed solar-blind photodetector on rigid and flexible substrates[J]. Advanced Optical Materials, 5, 1700454(2017).
[20] Xu Y, An Z Y, Zhang L X et al. Solar blind deep ultraviolet β-Ga2O3 photodetectors grown on sapphire by the Mist-CVD method[J]. Optical Materials Express, 8, 2941-2947(2018).
[21] Qin Y, Long S B, He Q M et al. Amorphous gallium oxide-based gate-tunable high-performance thin film phototransistor for solar-blind imaging[J]. Advanced Electronic Materials, 5, 1900389(2019).
[22] Han S, Huang X L, Fang M Z et al. High-performance UV detectors based on room-temperature deposited amorphous Ga2O3 thin films by RF magnetron sputtering[J]. Journal of Materials Chemistry C, 7, 11834-11844(2019).
[23] Liu Z, Zhi Y S, Li S et al. Comparison of optoelectrical characteristics between Schottky and Ohmic contacts to β-Ga2O3 thin film[J]. Journal of Physics D: Applied Physics, 53, 085105(2020).
[24] Dong L P, Pang T Q, Yu J G et al. Performance-enhanced solar-blind photodetector based on a CH3NH3PbI3/β-Ga2O3 hybrid structure[J]. Journal of Materials Chemistry C, 7, 14205-14211(2019).
[25] Peng Y K, Zhang Y, Chen Z W et al. Arrays of solar-blind ultraviolet photodetector based on β-Ga2O3 epitaxial thin films[J]. IEEE Photonics Technology Letters, 30, 993-996(2018).
[26] Wang Y H, Cui W J, Yu J et al. One-step growth of amorphous/crystalline Ga2O3 phase junctions for high-performance solar-blind photodetection[J]. ACS Applied Materials & Interfaces, 11, 45922-45929(2019).
[27] Li S, Yue J Y, Wu C et al. Self-powered ultraviolet photodetector based on β-Ga2O3/WO3 NPs heterojunction with low noise and high visible rejection[J]. IEEE Sensors Journal, 21, 26724-26730(2021).
[28] Zhang Y F, Chen X H, Xu Y et al. Transition of photoconductive and photovoltaic operation modes in amorphous Ga2O3-based solar-blind detectors tuned by oxygen vacancies[J]. Chinese Physics B, 28, 028501(2019).
[29] Wang Y H, Li H R, Cao J et al. Ultrahigh gain solar blind avalanche photodetector using an amorphous Ga2O3-based heterojunction[J]. ACS Nano, 15, 16654-16663(2021).
[30] Kumar N, Arora K, Kumar M. High performance, flexible and room temperature grown amorphous Ga2O3 solar-blind photodetector with amorphous indium-zinc-oxide transparent conducting electrodes[J]. Journal of Physics D: Applied Physics, 52, 335103(2019).
[31] Yu J G, Li Q A, Yao H Z et al. The performance of Al plasmon enhanced β-Ga2O3 solar-blind photodetector[J]. Scientia Sinica Physica, Mechanica & Astronomica, 52, 297305(2022).
[32] Cui S J, Mei Z X, Hou Y N et al. Enhanced photoresponse performance in Ga/Ga2O3 nanocomposite solar-blind ultraviolet photodetectors[J]. Chinese Physics B, 27, 067301(2018).
[33] Guo D Y, Zhao X L, Zhi Y S et al. Epitaxial growth and solar-blind photoelectric properties of corundum-structured α‑Ga2O3 thin films[J]. Materials Letters, 164, 364-367(2016).
[34] Zhu W H, Xiong L X, Si J W et al. Influence of deposition temperature on amorphous Ga2O3 solar-blind ultraviolet photodetector[J]. Semiconductor Science and Technology, 35, 055037(2020).
[35] Li S, Zhi Y S, Lu C et al. Broadband ultraviolet self-powered photodetector constructed on exfoliated β-Ga2O3/CuI core-shell microwire heterojunction with superior reliability[J]. The Journal of Physical Chemistry Letters, 12, 447-453(2021).
[36] Wang H B, Chen H Y, Li L et al. High responsivity and high rejection ratio of self-powered solar-blind ultraviolet photodetector based on PEDOT: PSS/β‑Ga2O3 organic/inorganic p-n junction[J]. The Journal of Physical Chemistry Letters, 10, 6850-6856(2019).
[37] Vieira D H, Badiei N, Evans J E et al. Improvement of the deep UV sensor performance of a β‑Ga2O3 photodiode by coupling of two planar diodes[J]. IEEE Transactions on Electron Devices, 67, 4947-4952(2020).
Get Citation
Copy Citation Text
Qiang Xu, Lili Yang, Zeng Liu, Maolin Zhang, Shan Li, Weihua Tang. Preparation and Study of Ag Nanoparticles Composite Amorphous Gallium Oxide Photodetector[J]. Acta Optica Sinica, 2023, 43(20): 2004003
Category: Detectors
Received: Apr. 13, 2023
Accepted: May. 31, 2023
Published Online: Oct. 23, 2023
The Author Email: Yang Lili (liliyang@njupt.edu.cn), Tang Weihua (whtang@njupt.edu.cn)