Dawei Wang
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Also affiliated: Tokyo Institute of Technology (2001); Guangzhou University of Chinese Medicine (2022); New Jersey Institute of Technology (2011); University of Science and Technology of China (2021); Central South University (1996); Qingdao Agricultural University (2020); Xidian University (2020); Nanjing Normal University (2023); Shandong University (2025); Hohai University (2024); Forschungszentrum Jülich (2020); Iowa State University (2022); State Grid Corporation of China (China) (2018); Jilin University (2009); Chinese Academy of Sciences (1996); Peking University (2020); University of California, Irvine (2003–2005); Queen's University (2005–2013); Harbin Institute of Technology (2024); Beijing Jiaotong University (2006–2008); Fudan University (2021–2024); Dalian University of Technology (2023–2024); Ernst Ruska Centre (2020); University of Massachusetts Boston (2010); Institute of Information Science, Academia Sinica (2005–2006); BOE Technology Group (China) (2020); Institute of Scientific and Technical Information of China (2021); Zhejiang Lab (2021); Xi'an University of Technology (2018); Xi’an University of Posts and Telecommunications (2020); Beijing Computational Science Research Center (2011); Qilu Hospital of Shandong University (2021); Hebei University (2020–2024); State Key Laboratory of Modern Optical Instruments (2021); State Key Laboratory of ASIC and System (2022–2023); State Key Laboratory of Electrical Insulation and Power Equipment (2023–2024); State Grid Shanxi Electric Power Company (China) (2018); State Grid Shanxi Electric Power Company Electric Power Research Institute (2018); Arizona State University (2022–2025); Zhejiang University (2018–2025); Columbia University (2023); Academia Sinica (2005–2006); Xi'an Jiaotong University (2010–2026); Taiyuan University of Technology (2021–2023); Texas A&M University (2016); University of Science and Technology Beijing (2003); Shanxi Normal University (2021–2024); Tsinghua University (2020–2025)
Upstream record may be merged OpenAlex, the source of these figures, lists 49 institutions in 6 countries for this author record — a pattern that usually means it combines several researchers with similar names. The totals above may include work by other people.
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Biography and Research Information
OverviewAI-generated summary
Dawei Wang's research has explored the properties of ferroelectric and multiferroic materials, including lead-free ceramics and perovskite oxides. His work has investigated diffuse phase transitions, giant electrostrictive coefficients, and the electrostrictive effect in various compositions. Wang has also studied nanoscale twinned phases and the finite-temperature properties of rare-earth-substituted BiFeO3 multiferroic solid solutions. His research has further extended to the observation of topologically protected edge states in photonic two-dimensional quantum walks.
With a substantial publication record of 246 papers and a citation count of 4,644, Wang holds an h-index of 38. His recent activity indicates ongoing engagement in research, with publications dating up to 2022 and a potential publication in 2026. The breadth of his publications suggests a diverse research background, including work on scallop genomics and molecular adaptations.
Metrics
- h-index: 38
- Publications: 233
- Citations: 4,348
Selected Publications
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Domain-Wall-Mediated Polarization Switching in Ferroelectric AlScN: Strain Relief and Field-Dependent Dynamics (2026)
Collaboration Network
Top Collaborators
- Atomistic Molecular Dynamic Simulations of Multiferroics
- Dynamical coupling in Pb(Zr,Ti)O3 solid solutions from first principles
- Fermi Resonance Involving Nonlinear Dynamical Couplings in Pb(Zr,Ti)O3 Solid Solutions
- Low-frequency coupled modes in disordered Pb(Zr,Ti)O 3 solid solutions from first principles
- Atomistic Molecular Dynamic Simulations of Multiferroics
- Dynamical coupling in Pb(Zr,Ti)O3 solid solutions from first principles
- Fermi Resonance Involving Nonlinear Dynamical Couplings in Pb(Zr,Ti)O3 Solid Solutions
- Low-frequency coupled modes in disordered Pb(Zr,Ti)O 3 solid solutions from first principles
- Solution-processed organic films of multiple small-molecules and white light-emitting diodes
- The escaped and trapped emission in organic light-emitting devices
- Solution-processed organic films of multiple small-molecules and white light-emitting diodes
- The escaped and trapped emission in organic light-emitting devices
- Solution-processed organic films of multiple small-molecules and white light-emitting diodes
- The escaped and trapped emission in organic light-emitting devices
- Dynamical coupling in Pb(Zr,Ti)O3 solid solutions from first principles
- Fermi Resonance Involving Nonlinear Dynamical Couplings in Pb(Zr,Ti)O3 Solid Solutions
- Fermi Resonance Involving Nonlinear Dynamical Couplings in Pb(Zr,Ti)O3 Solid Solutions
- Fermi Resonance Involving Nonlinear Dynamical Couplings in Pb(Zr,Ti)O3 Solid Solutions
- The escaped and trapped emission in organic light-emitting devices
- Solution-processed organic films of multiple small-molecules and white light-emitting diodes
- Solution-processed organic films of multiple small-molecules and white light-emitting diodes
- Solution-processed organic films of multiple small-molecules and white light-emitting diodes
- Solution-processed organic films of multiple small-molecules and white light-emitting diodes
- Domain-Wall-Mediated Polarization Switching in Ferroelectric AlScN: Strain Relief and Field-Dependent Dynamics
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