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Highly Efficient Photon Energy Conversion and Ultrasensitive Self-Powered Photodetection via a Monolithic p-3C-SiC Nanothin Film on p-Si/n-Si Double Junction.
Ninh, Dinh Gia; Hoang, Minh Tam; Nguyen, Tuan-Hung; Streed, Erik; Dimitrijev, Sima; Tanner, Philip; Nguyen, Tuan-Khoa; Nguyen, Nam-Trung; Wang, Hongxia; Zhu, Yong; Dau, Van; Dao, Dzung Viet.
Afiliación
  • Ninh DG; Queensland Micro and Nanotechnology Centre (QMNC), Griffith University, Brisbane, QLD 4111, Australia.
  • Hoang MT; School of Engineering and Built Environment, Griffith University, Gold Coast, QLD 4215, Australia.
  • Nguyen TH; Group of Materials and Structures, Hanoi University of Science and Technology, Hanoi 100000, Vietnam.
  • Streed E; School of Chemistry and Physics, Faculty of Science, Queensland University of Technology, Brisbane, QLD 4001, Australia.
  • Dimitrijev S; Centre for Materials Science, Queensland University of Technology (QUT), Brisbane, QLD 4001, Australia.
  • Tanner P; Queensland Micro and Nanotechnology Centre (QMNC), Griffith University, Brisbane, QLD 4111, Australia.
  • Nguyen TK; Institute for Glycomics, Griffith University, Southport 4222, Australia.
  • Nguyen NT; Queensland Micro and Nanotechnology Centre (QMNC), Griffith University, Brisbane, QLD 4111, Australia.
  • Wang H; Queensland Micro and Nanotechnology Centre (QMNC), Griffith University, Brisbane, QLD 4111, Australia.
  • Zhu Y; Queensland Micro and Nanotechnology Centre (QMNC), Griffith University, Brisbane, QLD 4111, Australia.
  • Dau V; Queensland Micro and Nanotechnology Centre (QMNC), Griffith University, Brisbane, QLD 4111, Australia.
  • Dao DV; School of Chemistry and Physics, Faculty of Science, Queensland University of Technology, Brisbane, QLD 4001, Australia.
ACS Appl Mater Interfaces ; 16(29): 38658-38668, 2024 Jul 24.
Article en En | MEDLINE | ID: mdl-38995693
ABSTRACT
The pursuit of increased efficiency of photoelectric energy conversion through optimized semiconductor structures remains highly competitive, with current results yet to align with broad expectations. In this study, we discover a significant enhancement in photocurrent performance of a p-3C-SiC nanothin film on p-Si/n-Si double junction (DJ) heterostructure that integrates p-3C-SiC/p-Si heterojunction and p-Si/n-Si homojunction. The vertical photocurrent (VPC) and vertical photoresponsivity exhibit a substantial enhancement in the DJ heterostructure, surpassing by a maximum of 43-fold compared to the p-3C-SiC/n-Si single junction (SJ) counterpart. The p-3C-SiC layer and n-Si substrate of the two heterostructures have similar material and geometrical properties. More importantly, the fabrication costs for the DJ and SJ heterostructure devices are comparable. Our results demonstrate a significant potential for using DJ devices in energy harvesters, micro/nano electromechanical systems, and sensing applications. This research may also lead to the creation of advanced optoelectronic devices using DJ structures, where employing various semiconductor materials to achieve exceptional performance through the application of the concept and theoretical model described in this work.
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Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Idioma: En Revista: ACS Appl Mater Interfaces Asunto de la revista: BIOTECNOLOGIA / ENGENHARIA BIOMEDICA Año: 2024 Tipo del documento: Article País de afiliación: Australia Pais de publicación: Estados Unidos

Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Idioma: En Revista: ACS Appl Mater Interfaces Asunto de la revista: BIOTECNOLOGIA / ENGENHARIA BIOMEDICA Año: 2024 Tipo del documento: Article País de afiliación: Australia Pais de publicación: Estados Unidos