Yang Zhang
Affiliation confirmed via AI analysis of OpenAlex, ORCID, and web sources.
Professor
Also affiliated: North University of China (2018); University of Shanghai for Science and Technology (2014); Xidian University (2024); City University of Hong Kong (2022); Chinese Academy of Sciences (2014); Italian Institute of Technology (2015); Guizhou Minzu University (2023); Institute of Semiconductors (2014); Arizona State University (2007–2020); Zhejiang University (2023)
Faculty Researcher
Agricultural Economics and Agribusiness
Research Areas
Biomedical Subjects
Links
Biography and Research Information
OverviewAI-generated summary
Yang Zhang's research focuses on the fabrication and characterization of micro- and nano-scale systems, with an emphasis on their optical, electrical, and thermal transport properties. He investigates the development of novel nanoelectronic and photovoltaic devices, employing both top-down and bottom-up fabrication techniques. His doctoral work involved developing nanofabrication schemes for metallic air-bridges and silicon nanowire devices using electron-beam lithography. Current research activities include probing the electrical properties of graphene and graphene oxide with conductive atomic force microscopy, and exploring ultra-high sensitivity gas sensing with controllably aligned single nanowires. Zhang has published 23 papers, accumulating 353 citations and an h-index of 11. He collaborates with researchers at the University of Arkansas at Fayetteville and the University of Arkansas at Pine Bluff.
Metrics
- h-index: 11
- Publications: 23
- Citations: 358
Selected Publications
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Study of electronic band alignment in SiGeSn/GeSn quantum well via internal photoemission effect (2025)
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Epoxy oxidized diamond (111)-(2 × 1) surface for nitrogen-vacancy based quantum sensors (2020)
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Photoluminescence of InAs/GaAs quantum dots under direct two-photon excitation (2020)
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Electron affinity of boron-terminated diamond (001) surfaces: a density functional theory study (2019)
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Harnessing Quantum Wave Nature of Individual Electrons for Single Photon Detection (2018)
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Detecting Single Photons Using Capacitive Coupling of Single Quantum Dots (2018)
Collaboration Network
Top Collaborators
- Study of electronic band alignment in SiGeSn/GeSn quantum well via internal photoemission effect
- Study of electronic band alignment in SiGeSn/GeSn quantum well via internal photoemission effect
- Study of electronic band alignment in SiGeSn/GeSn quantum well via internal photoemission effect
- Study of electronic band alignment in SiGeSn/GeSn quantum well via internal photoemission effect
- Study of electronic band alignment in SiGeSn/GeSn quantum well via internal photoemission effect
- Study of electronic band alignment in SiGeSn/GeSn quantum well via internal photoemission effect
- Study of electronic band alignment in SiGeSn/GeSn quantum well via internal photoemission effect
- Study of electronic band alignment in SiGeSn/GeSn quantum well via internal photoemission effect
- Study of electronic band alignment in SiGeSn/GeSn quantum well via internal photoemission effect
- Study of electronic band alignment in SiGeSn/GeSn quantum well via internal photoemission effect
- Study of electronic band alignment in SiGeSn/GeSn quantum well via internal photoemission effect
- Study of electronic band alignment in SiGeSn/GeSn quantum well via internal photoemission effect
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