Minghui Liu | Radiation Physics | Research Excellence Award

Research Excellence Award

Mr. Minghui Liu
Affiliation Naval University of Engineering
Country China
Scopus ID 58298229600
Documents 13
Citations 61
h-index 3
Subject Area Radiation Physics
Event World Electrical Engineering Awards

Minghui Liu is affiliated with the Naval University of Engineering, China, and is recognized for scholarly contributions in the field of radiation physics and related engineering disciplines. His research profile demonstrates active engagement in scientific publication, citation development, and technical investigations associated with radiation-related engineering applications.[1] The academic profile reflects participation in internationally indexed research outputs and professional recognition within electrical and applied engineering communities.[2]

Abstract

This article presents a structured academic recognition overview of Mr. Minghui Liu, whose scholarly activities are associated with radiation physics and engineering-oriented scientific research. The profile reflects indexed publication records, measurable citation activity, and participation in internationally recognized research databases.[1] The article further evaluates publication performance, research visibility, and technical contribution areas associated with engineering-oriented scientific research.

Keywords

Radiation Physics; Electrical Engineering; Scientific Publications; Research Metrics; Citation Analysis; Engineering Research; Academic Recognition; Indexed Journals; Scopus Profile; Applied Physics.

Introduction

Academic recognition systems frequently evaluate researchers based on publication quality, citation performance, interdisciplinary influence, and scientific engagement. Within engineering and applied physics disciplines, researchers contributing to radiation physics support advancements in instrumentation, technical analysis, energy systems, and scientific methodology.[3] Mr. Minghui Liu’s scholarly profile demonstrates measurable participation in these academic areas through indexed publications and citation records available through international research databases.[1]

Professional engineering recognition programs commonly evaluate scholarly consistency, academic visibility, and documented scientific contribution within technical disciplines.

Research Profile

According to indexed academic records, Mr. Minghui Liu has authored or co-authored thirteen scientific documents with a cumulative citation count of sixty-one and an h-index value of three.[1] These metrics indicate measurable scholarly engagement and continued participation in technical research dissemination. The research portfolio is primarily associated with radiation physics and related scientific engineering domains.

Researchers working within engineering and applied scientific institutions frequently contribute to engineering analysis, physical sciences, and advanced technical methodologies relevant to interdisciplinary technological development.

Research Contributions

The available research profile suggests contributions associated with radiation-related engineering analysis, scientific measurement systems, and applied physical methodologies. Radiation physics research plays a significant role in energy systems, materials evaluation, medical instrumentation, and environmental analysis.[3]

Engineering research within radiation-oriented scientific domains commonly requires multidisciplinary integration involving physics, electrical systems, instrumentation, and computational assessment. The publication activity attributed to Mr. Minghui Liu reflects involvement in technical scientific communication and participation in peer-reviewed research dissemination.[2]

Publications

The indexed publication portfolio associated with Mr. Minghui Liu includes scientific works documented in internationally recognized databases. Publication activity serves as an important indicator of research engagement, collaborative participation, and technical communication within academic communities.[1]

Research Impact

Citation indicators and indexed publication visibility provide measurable evidence of academic engagement and technical dissemination. The citation profile associated with Mr. Minghui Liu indicates that the published research has attracted scholarly attention within related scientific communities.[1]

Research impact in radiation physics and engineering frequently extends beyond direct publication metrics and contributes to broader technical applications including instrumentation systems, scientific diagnostics, computational modeling, and engineering design processes.[3] Indexed publications further support academic collaboration and scientific visibility across institutional and international research environments.

Award Suitability

Based on the available scholarly indicators, Mr. Minghui Liu demonstrates characteristics commonly associated with professional engineering recognition programs, including indexed publication activity, measurable citation performance, and subject specialization in radiation physics. The integration of scientific research with engineering-oriented applications aligns with broader objectives related to engineering and applied scientific advancement.

Professional engineering award frameworks generally emphasize scientific contribution, innovation potential, and research dissemination within engineering and technical disciplines. The documented publication and citation profile supports consideration under academic recognition categories relevant to applied physics and engineering sciences.

Conclusion

Mr. Minghui Liu’s academic profile reflects active participation in radiation physics research and indexed scientific publication. The documented metrics, including publication count, citation visibility, and institutional affiliation, indicate measurable scholarly contribution within engineering-related scientific disciplines.[1] The research record demonstrates alignment with professional academic recognition standards associated with engineering excellence and technical research contribution.

References

  1. Elsevier. (n.d.).Scopus author details: Mr. Minghui Liu, Author ID 58298229600. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=58298229600
  2. ORCID. (n.d.).ORCID profile record for Minghui Liu.
    https://orcid.org/0009-0000-8950-4261
  3. Ren, Y., Zhu, M., Liu, Y., Dai, X., Zhao, J., & Liu, M. (2026). Modeling and experimental validation of ELDRS-induced total dose degradation in bipolar transistors. Radiation Physics and Chemistry, 244, 113794.
    https://doi.org/10.1016/j.radphyschem.2026.113794

 

 

Pengfei Guo | Optoelecronics and Nanophotonics | Best Research Award

Prof. Dr. Pengfei Guo | Optoelecronics and Nanophotonics | Best Research Award

Prof. | Taiyuan University of Technology | China

Prof. Dr. Pengfei Guo is a Professor in the College of Physics and Optoelectronics at Taiyuan University of Technology, specializing in low-dimensional semiconductor materials, optoelectronics, and nanophotonics. He holds a bachelor’s degree in physics and electronics, a master’s degree in physics and electronics, and a doctoral degree in materials science and engineering. His professional experience includes academic appointments and postdoctoral research at leading institutions, participation in competitive scholar programs, supervision of research teams, and leadership in advanced nanomaterials projects. His research focuses on the controlled growth of one- and two-dimensional semiconductor nanostructures, novel optical and electronic properties, nanophotonic devices, and energy-related technologies, with extensive publications in high-impact international journals. Prof. Guo has received multiple prestigious awards and honors, serves in editorial roles for scholarly journals, and is an active member of the international research community, with 2,480 citations, an h-index of 25, and an i10-index of 52.

Citation Metrics (Google Scholar)

2480
500
400
300
200
100
0

Citations

2480

h-index

25

Citations

h-index

View Google Scholar View ORCID Profile

Featured Publications

Growth of Alloy MoS2xSe2(1–x) Nanosheets with Fully Tunable Chemical Compositions and Optical Properties
H. Li, X. Duan, X. Wu, X. Zhuang, H. Zhou, Q. Zhang, X. Zhu, W. Hu, P. Ren, et al.
Journal of the American Chemical Society, 136(10), 3756–3759 · Citations: 582

Room-Temperature Dual-Wavelength Lasing from Single-Nanoribbon Lateral Heterostructures
J. Xu, L. Ma, P. Guo, X. Zhuang, X. Zhu, W. Hu, X. Duan, A. Pan
Journal of the American Chemical Society, 134(30), 12394–12397 · Citations: 127

On-Nanowire Axial Heterojunction Design for High-Performance Photodetectors
P. Guo, J. Xu, K. Gong, X. Shen, Y. Lu, Y. Qiu, J. Xu, Z. Zou, C. Wang, H. Yan, et al.
ACS Nano, 10(9), 8474–8481 · Citations: 102

Wavelength-Converted Selective Waveguiding Based on Composition-Graded Semiconductor Nanowires
J. Xu, X. Zhuang, P. Guo, Q. Zhang, W. Huang, Q. Wan, W. Hu, X. Wang, X. Zhu, et al.
Nano Letters, 12(9), 5003–5007 · Citations: 94

Semiconductor Alloy Nanoribbon Lateral Heterostructures for High-Performance Photodetectors
P. Guo, W. Hu, Q. Zhang, X. Zhuang, X. Zhu, H. Zhou, Z. Shan, J. Xu, A. Pan
Advanced Materials, 26(18), 2844–2849 · Citations: 86

Zhongjun Ma | Nanoelectronics | Research Excellence Award

Dr. Zhongjun Ma | Nanoelectronics | Research Excellence Award

Engineer | Henan Normal University | China

Zhongjun Ma is a faculty researcher at the School of Environment, Henan Normal University, Xinxiang, China, specializing in microwave absorption and related electromagnetic functional materials. He earned his doctoral degree with a specialization in microwave absorption science, building a strong foundation in material design, absorption mechanisms, and device-oriented applications. Professionally, he has contributed through academic teaching, research project participation, and collaborative research activities, demonstrating leadership in experimental design and scholarly dissemination. His research focuses on microwave absorbing materials, absorption mechanisms, and the development of high-performance microwave absorbing devices, with contributions that advance both theoretical understanding and practical implementation. He has authored 22 scholarly documents that collectively reflect sustained research productivity and impact, achieving 521 citations and an h-index of 12, underscoring the relevance and influence of his work within the field.

Citation Metrics (Scopus)

521

400

300

200

100

0

Citations
521
Documents
22
h-index
12

Citations

Documents

h-index

View Scopus Profile View ORCID Profile

Featured Publications

Toroidal Curved Overlapping Patch Resonant Microwave Sensor for Bolt Loosening Detection
Han, X.-Y.; Zhang, D.; Liu, J.; Liu, X.; Sun, C.; Fu, C.-H.; Ma, Z.-J. – SSRN
ZIF-67-Derived Hierarchical Porous Hollow Shell Engineering for Efficient Microwave Absorption in Ku Band
Han, X.; Sun, C.; Zhang, S.; Liu, K.; Zhai, P.; Liu, X.; Zhang, D.; Liu, J.; Ma, Z. – SSRN
Conversion of Lignin into Porous Carbons for High-Performance Supercapacitors via Spray Drying and KOH Activation
Feng, S.; Ouyang, Q.; Huang, J.; Zhang, X.; Ma, Z.; Liang, K.; Huang, Q. – Journal of Renewable Materials