Mishelle Doorasamy | Accounting and Finance | Innovative Research Award

 

Innovative Research Award

Mishelle Doorasamy
Researcher Mishelle Doorasamy
Affiliation University of KwaZulu-Natal
Country South Africa
Scopus ID 56897215100
Documents 33
Citations 214
h-index 8
Subject Area Accounting and Finance
Event Global Cad Awards
ORCID 0000-0001-9320-3461

Mishelle Doorasamy
University of KwaZulu-Natal, South Africa

The Innovative Research Award recognizes researchers who have demonstrated meaningful scholarly contributions through sustained research activity, academic publications, and measurable impact within their respective disciplines. Mishelle Doorasamy has established an active research profile in accounting and finance through peer-reviewed publications, scholarly collaborations, and contributions to contemporary research discussions.[1]

Abstract

Mishelle Doorasamy’s academic profile reflects continued engagement in accounting and finance research with emphasis on producing peer-reviewed scholarly work and contributing to knowledge development. Her publication record, citation performance, and collaborative research activities demonstrate consistent participation in the advancement of financial and accounting scholarship.[1][2]

Keywords

Accounting, Finance, Financial Reporting, Corporate Governance, Sustainability Reporting, Auditing, Higher Education, Business Research, Research Impact, Scholarly Publications.

Introduction

Accounting and finance research plays a central role in improving transparency, governance, organizational performance, and financial decision-making. Researchers working within these disciplines contribute evidence-based knowledge that supports businesses, policymakers, and educational institutions. Through scholarly publications and academic collaboration, researchers continue to strengthen theoretical understanding while addressing practical financial challenges.[2]

Research Profile

According to the available Scopus author profile, Mishelle Doorasamy has authored 33 indexed documents that have collectively received 214 citations, resulting in an h-index of 8. These metrics indicate sustained scholarly productivity and measurable academic influence within accounting and finance research.[1]

  • Subject specialization in Accounting and Finance.
  • Indexed publications in internationally recognized databases.
  • Research collaboration through peer-reviewed academic outputs.
  • Demonstrated citation impact across scholarly literature.

Research Contributions

The research contributions of Mishelle Doorasamy include scholarly investigations within accounting, financial management, governance, reporting practices, and related business disciplines. Her published work contributes to academic discussion by supporting evidence-based approaches, encouraging analytical evaluation of financial systems, and strengthening educational and professional understanding of accounting practices.[1]

Publications

The research portfolio consists of peer-reviewed journal articles indexed within Scopus and other scholarly databases. These publications collectively demonstrate continuous academic engagement and contribute to citation visibility within the accounting and finance research community.[1]

  • Peer-reviewed accounting research.
  • Finance and governance publications.
  • Collaborative scholarly articles.
  • Research indexed in international citation databases.

Research Impact

Citation indicators provide measurable evidence of academic visibility and research influence. With 214 citations and an h-index of 8, the available bibliometric profile demonstrates that multiple publications have received recognition from subsequent scholarly work, indicating continuing relevance within the academic community.[1]

Award Suitability

Based on the documented publication record, citation performance, research consistency, and demonstrated academic engagement, Mishelle Doorasamy exhibits characteristics aligned with the objectives of the Innovative Research Award. The available scholarly evidence reflects sustained contributions to accounting and finance while maintaining an active presence in peer-reviewed research and academic dissemination.[1][2]

Conclusion

The available academic indicators present a well-established research profile characterized by consistent scholarly productivity and measurable citation impact. Continued contributions to accounting and finance research support the recognition of Mishelle Doorasamy within the broader academic community and demonstrate alignment with the objectives of international academic recognition programs.[1]

References

  1. Elsevier. (n.d.). Scopus author details: Mishelle Doorasamy, Author ID 56897215100. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=56897215100
  2. The impact of credit risk on performance: a case of South African commercial banksDOI: https://journals.sagepub.com/doi/abs/10.1177/0972150920969927
  3. ORCID. (n.d.). ORCID researcher identifier.

    https://orcid.org/0000-0001-9320-3461
  4. Capital structure, firm value and managerial ownership: Evidence from East African countrieshttps://www.proquest.com/openview/c581b14e62dc26270bd664e009574387/1?pq-origsite=gscholar&cbl=4368392
  5. Cleaner production, environmental and economic sustainability of production firms in South Africahttps://www.sciencedirect.com/science/article/pii/S0959652621009276

Heng Ouyang | Structural Health Monitoring | Best Researcher Award

Best Researcher Award

Heng Ouyang
Affiliation Hebei University of Technology
Country China
Scopus ID 57217873805
Documents 20
Citations 272
h-index 8
Subject Area Structural Health Monitoring
Event Global Cad Awards

Heng Ouyang
Hebei University of Technology

Heng Ouyang
is affiliated with Hebei University of Technology, China, and is engaged in research focused on structural health monitoring and related engineering technologies. His scholarly contributions include peer-reviewed publications indexed in international databases and research addressing monitoring methodologies, sensing technologies, structural reliability, and engineering applications. Based on publicly available academic metrics, his research demonstrates a developing citation profile and sustained publication activity within the field.[1]

Abstract

This article presents an academic overview of Heng Ouyang’s research profile in structural health monitoring. It summarizes scholarly productivity, research themes, publication record, research impact, and overall suitability for recognition through the Best Researcher Award. The assessment is based on publicly available scholarly information and recognized bibliographic sources.[1]

Keywords

Structural Health Monitoring, Damage Detection, Smart Structures, Civil Engineering, Sensor Technology, Vibration Monitoring, Infrastructure Assessment, Engineering Diagnostics, Reliability Engineering, Data Analysis.

Introduction

Structural health monitoring is an interdisciplinary engineering field that combines sensing technologies, signal processing, structural mechanics, and data-driven analysis to evaluate the condition of engineering infrastructure. Researchers in this discipline contribute to improving safety, maintenance planning, and lifecycle management for bridges, buildings, transportation systems, and industrial facilities. Heng Ouyang’s scholarly work aligns with these objectives through research addressing structural monitoring methodologies and engineering reliability.[2]

Research Profile

According to publicly available Scopus indexing, Heng Ouyang has authored 20 indexed documents with 272 citations and an h-index of 8. These indicators reflect consistent research activity and measurable academic influence within structural health monitoring and related engineering disciplines. His research portfolio demonstrates engagement in collaborative scientific investigations and dissemination through peer-reviewed publications.[1]

Research Contributions

The research contributions associated with Heng Ouyang primarily involve structural monitoring techniques, engineering diagnostics, sensing systems, and methods supporting infrastructure assessment. His publications contribute to advancing knowledge related to monitoring accuracy, structural integrity evaluation, and practical engineering implementation. These studies support the broader development of resilient infrastructure and evidence-based maintenance strategies.[2]

  • Structural health monitoring methodologies.
  • Sensor-based engineering assessment.
  • Damage identification and structural diagnostics.
  • Engineering reliability and infrastructure evaluation.

Publications

The publication record consists of peer-reviewed journal articles and conference contributions indexed within recognized scholarly databases. Representative research themes include structural sensing, monitoring algorithms, engineering inspection techniques, and infrastructure diagnostics.[1]

  • Peer-reviewed journal publications in engineering.
  • Research on structural monitoring technologies.
  • Studies involving engineering diagnostics and reliability.
  • Articles contributing to applied infrastructure research.

Research Impact

Bibliometric indicators show measurable scholarly visibility through citations and an established h-index. Citation activity suggests that the published work has been referenced by other researchers investigating structural monitoring and engineering systems. Such metrics provide quantitative evidence of academic engagement while complementing qualitative evaluation of research quality.[1]

Award Suitability

Based on the available publication record, citation metrics, and research specialization, Heng Ouyang demonstrates characteristics that are relevant for consideration within the Best Researcher Award category. His documented scholarly contributions, sustained publication activity, and engagement in structural health monitoring support recognition of ongoing academic achievement while reflecting continued research development within the engineering community.[1]

Conclusion

Heng Ouyang has established a research profile centered on structural health monitoring through peer-reviewed publications, measurable citation impact, and engineering-focused scholarship. His academic activities contribute to the advancement of infrastructure monitoring technologies and support the objectives of evidence-based engineering research. The available scholarly indicators provide a foundation for recognition within academic award programs that acknowledge sustained research excellence.[1]

References

  1. Scopus author details: Heng Ouyang, Author ID 57217873805.
    Scopus.https://www.scopus.com/authid/detail.uri?authorId=57217873805
  2. Optimal sensor placement for uncertain inverse problem of structural parameter estimation
    https://www.sciencedirect.com/science/article/pii/S0888327021003095
  3. Correlation propagation for uncertainty analysis of structures based on a non-probabilistic ellipsoidal model
    https://www.sciencedirect.com/science/article/pii/S0307904X20302778
  4. A novel dynamic model updating method for composite laminate structures considering non-probabilistic uncertainties and correlations
    https://www.sciencedirect.com/science/article/pii/S0263822322001635
  5. Non-probabilistic uncertain inverse problem method considering correlations for structural parameter identification
    https://link.springer.com/article/10.1007/s00158-021-02920-4

Jian-fei Shi | Gear System Engineering | Best Researcher Award

Best Researcher Award

Jian-fei Shi
Lanzhou University of Technology, China

Jian-fei Shi
Affiliation Lanzhou University of Technology
Country China
Scopus ID 57194331097
Documents 49
Citations 806
h-index 15
Subject Area Gear System Engineering
Event Global Cad Awards

Jian-fei Shi is a researcher affiliated with Lanzhou University of Technology whose scholarly activities primarily focus on gear system engineering, mechanical transmission technology, dynamics, and advanced manufacturing research. His academic profile demonstrates sustained contributions through peer-reviewed publications, measurable citation impact, and continuing engagement with engineering research. These characteristics support consideration for academic recognition within the framework of the Global Cad Awards.[1]

Abstract

This article summarizes the academic profile of Jian-fei Shi in the field of gear system engineering. His research reflects sustained contributions to mechanical transmission, gear dynamics, structural optimization, and engineering design supported by a publication record, citation performance, and recognized scholarly activity. The profile is presented in a neutral encyclopedic style for academic reference.[1]

Keywords

  • Gear System Engineering
  • Gear Dynamics
  • Mechanical Transmission
  • Machine Design
  • Tribology
  • Finite Element Analysis
  • Mechanical Engineering

Introduction

Research in gear system engineering plays an essential role in improving mechanical efficiency, durability, precision manufacturing, and industrial automation. Jian-fei Shi has contributed to this research area through investigations involving gear transmission performance, vibration characteristics, structural optimization, and engineering applications that support modern mechanical systems.[2]

Research Profile

According to publicly available scholarly records, Jian-fei Shi has authored forty-nine indexed publications with more than eight hundred citations and an h-index of fifteen. These indicators demonstrate consistent academic productivity and measurable influence within engineering literature while reflecting continuing engagement with peer-reviewed scientific research.[1]

Research Contributions

The research contributions associated with Jian-fei Shi include investigations into gear contact mechanics, transmission efficiency, dynamic behavior, mechanical reliability, numerical simulation, and optimization methods for rotating machinery. These studies contribute to improved engineering performance and provide technical knowledge useful for manufacturing, transportation, and industrial equipment design.[2]

Publications

The publication record includes journal articles addressing gear transmission systems, vibration analysis, structural optimization, fatigue behavior, and computational mechanical engineering. Representative publications are indexed within international scholarly databases and include articles carrying Digital Object Identifiers (DOIs).[3]

  • Peer-reviewed engineering journal articles.
  • Research on gear dynamics and transmission optimization.
  • Finite element modelling and structural analysis.
  • Engineering applications in mechanical system design.

Research Impact

Citation indicators and publication output suggest that the research has been referenced by other investigators working in mechanical engineering and gear transmission technologies. Such impact metrics provide quantitative evidence of scholarly visibility while complementing qualitative assessments of research quality and technical relevance.[1]

Award Suitability

Based on publicly available scholarly metrics, publication activity, citation performance, and sustained contributions to gear system engineering, Jian-fei Shi demonstrates characteristics commonly associated with candidates considered for academic recognition. The documented research record reflects continuing scholarly engagement, peer-reviewed dissemination, and measurable academic influence appropriate for evaluation within the Global Cad Awards Best Researcher Award category. Final award decisions remain subject to the official assessment criteria established by the organizing committee.[1]

Conclusion

Jian-fei Shi has established a documented academic profile characterized by sustained engineering research, peer-reviewed publications, and measurable scholarly impact. His work contributes to the advancement of gear system engineering and mechanical transmission research while supporting continued academic development within the international engineering community.[2]

References

  1. Scopus author details: Jian-fei Shi, Author ID 57194331097.
    Scopus.https://www.scopus.com/authid/detail.uri?authorId=57194331097
  2. Multi-state dynamics of planetary gear transmission under eccentricity-induced orbiting motion
    https://www.sciencedirect.com/science/article/pii/S0094114X26001400
  3. Exploring health-to-instability transitions in geared Systems based on tooth surface contact fatigue failure
    https://www.sciencedirect.com/science/article/pii/S1007570426003175
  4. Study on Multi-state Engaging and Disengaging Proportion Characteristics of a Gear-rotor-bearing System

    https://www.sciencedirect.com/science/article/abs/pii/S0022460X22005430

Jinn Chu| nanostructure array| Best Academic Researcher Award

Prof. Jinn Chu| nanostructure array| Best Academic Researcher Award

Chair Professor, National Taiwan University of Science and Technology, Taiwan

πŸ”¬ Short BiographyΒ πŸŒΏπŸ’ŠπŸ“š

Prof. Jinn Chu is a Chair Professor at the National Taiwan University of Science and Technology, Taiwan. Renowned for his pioneering contributions to nanostructure arrays and thin film technologies, his research bridges materials science and nanotechnology with practical applications in electronics, energy, and surface engineering. With a distinguished academic career spanning decades, Prof. Chu has authored numerous high-impact publications and holds several patents, reflecting his leadership in innovative materials research. His work has earned him international recognition and positions on editorial boards and scientific committees. He continues to mentor emerging scholars and drive advancements in nanoscale materials engineering.

Profile

Scopus

πŸŽ“ Education

Dr. Jinn P. Chu earned his Ph.D. in Materials Science from the prestigious University of Illinois at Urbana-Champaign, USA. His strong academic foundation in materials science laid the groundwork for a prolific career in both research and academic leadership, focusing on advanced materials engineering and thin film technology.

πŸ’Ό Professional Experience

Dr. Chu is currently the Chair Professor of Materials Science and Engineering at the National Taiwan University of Science and Technology (Taiwan Tech). Over the years, he has held numerous influential roles at the university, including Vice President, Dean of Research and Development, and Vice Dean of the College of Engineering. His contributions extend to professional societies, having served as President of the Taiwan Association for Coatings and Thin Films Technology (TACT) from 2012 to 2014, and as Vice President of MRS-Taiwan. He is also a past Chair of the AVS-Taiwan Chapter.

πŸ› οΈ Skills and Editorial Roles

Dr. Chu’s expertise spans a wide array of interdisciplinary skills including thin-film deposition techniques, metallic glasses, MEMS/NEMS device fabrication, and nanostructured coatings. He serves as an Associate Editor of the AVS Journal of Vacuum Science and Technology (JVST) and is a member of the Editorial Board of Thin Solid Films journal. His technical and editorial skills have helped elevate global materials research standards.

πŸ”¬ Research Focus

Dr. Chu’s research centers on the physics and physical properties of thin-film metallic glasses, particularly those fabricated by magnetron sputter deposition. His work is notable for the application of metallic nanotube arrays, which earned recognition from the American Chemical Society. These nanostructures are integral to MEMS and NEMS applications, such as biosensors, optical gratings, and nanogenerators, demonstrating both fundamental and applied scientific impact.

πŸ… Awards and Recognition

Dr. Chu’s distinguished contributions have earned him numerous accolades. These include the Outstanding Research Award from Taiwan’s Ministry of Science and Technology, the Taiwan National Innovation Awards, and the ACS Award at Japan Nano Tech 2018. He has been consistently recognized in Stanford University’s list of Top 2% Scientists (Career Impact) for 2021, 2022, and 2023. With over 230 peer-reviewed publications and 50 patents, his innovations continue to shape the landscape of modern materials science.

  • Title: Semiconductor-based wafer-scale highly ordered metallic nanostructured arrays for sustainable energy and sensing technologies

    Authors: Not listed (author names truncated or missing)

    Journal: Not specified

    Year: 2025

    Citations: 0

    2. Title: Study on performance improvement of zinc oxide gas sensor with silver nanoparticles surface modification

    Authors: Not listed (author names truncated or missing)

    Journal: Sensors and Actuators B: Chemical

    Year: 2025

    Citations: 0

    3. Title: Enhanced energy harvesting through lubricant-water interaction on a superoleophobic stainless steel@cellulose ester nanogenerator

    Authors: Not listed (author names truncated or missing)

    Journal: Nano Energy

    Year: 2025

    Citations: 0

    4. Title: A highly-ordered close-packed metallic nanotube array for surface-enhanced Raman scattering

    Authors: Not listed (author names truncated or missing)

    Journal: Nanoscale

    Year: 2025

    Citations: 0

    5. Title: A slippery and icephobic surface based on lubricant-infused metallic glass nanotube array

    Authors: Not listed (author names truncated or missing)

    Journal: Applied Surface Science

    Year: 2025

    Citations: 0

 

 

🏁conclusion:

Dr. Jinn P. Chu is exceptionally qualified for the Research for Best Academic Researcher Award. His body of work not only exemplifies academic excellence but also reflects innovation with real-world impact. His leadership roles and editorial influence further elevate his suitability. With minor enhancements in international mentorship visibility, he could serve as a global benchmark in academic research excellence.

Shouqiang Lai | Optical Materials | Best Researcher Award

Dr. Shouqiang Lai | Optical Materials | Best Researcher Award

Dr. Shouqiang Lai, Xiamen University, China

Dr. Shouqiang Lai (b. October 1995, Longyan, Fujian) is a researcher specializing in III-V nitride semiconductor materials and devices, particularly in Mini/Micro-LED technology. He holds a prominent role in various funded projects, including the development of new MicroLED devices for communication and display applications. Dr. Lai has published numerous papers in high-impact journals and holds multiple patents related to LED and Micro-LED technologies. His expertise encompasses semiconductor fabrication, micro-nano processing, and optoelectronic performance testing. Dr. Lai is also skilled in advanced laser cutting processes for Mini/Micro-LEDs, contributing to cutting-edge technology in the industry. πŸ’‘πŸ”¬πŸ“ˆ

Publication Profile

Scopus

Research Experience

Dr. Shouqiang Lai has been a key member in several significant research projects during his graduate studies. He contributed to the National Natural Science Foundation project on the preparation and performance analysis of new MicroLED devices for communication and display applications, with a funding of Β₯480,000. He also participated in the Fujian Provincial Key Talent Program, focusing on high-efficiency, low-crosstalk Micro-LED technology with Β₯300,000 in funding. Additionally, Dr. Lai worked on the Xiamen City Major Project for Micro-LED display technology development (Β₯16.33 million) and collaborated on various industry-university projects aimed at advancing semiconductor technology. πŸ’‘πŸ“Š

 

Scientific Achievements

Dr. Shouqiang Lai has an impressive publication record, with 13 peer-reviewed articles as the primary or corresponding author and five more under review. His high-impact research has been featured in prestigious journals like IEEE Transactions on Electron Devices, Opto-Electronic Advances, and Advanced Science. His work focuses on optimizing the efficiency of green and blue InGaN/GaN micro-LEDs, making significant contributions to display and optoelectronic technologies. Dr. Lai has also made notable contributions to five patents, showcasing his innovative approach in semiconductor and LED technologies. πŸŒŸπŸ’‘

 

Research Focus

Dr. Shouqiang Lai’s research primarily revolves around the optimization and performance enhancement of micro-LED and related optoelectronic devices. His key focus areas include improving the efficiency, modulation bandwidth, and overall performance of green and blue InGaN/GaN micro-LEDs, particularly for applications in displays and visible light communication. He also investigates the impacts of passivation techniques, such as atomic layer deposition (ALD), on the performance of LED devices. Additionally, Dr. Lai explores innovative approaches to enhancing the electro-optical performance of AlGaN-based ultraviolet LEDs. His work holds significant implications for the future of semiconductor and optoelectronic technologies. πŸŒŸπŸ”‹

 

Publication Top Notes

  • “Impacts of the area-ratios of V-pit for the optoelectronic performance of green micro-LEDs,” Liu, S., Li, D., Lai, C., Lai, S., Wu, T. Journal of Alloys and Compounds, 2025, 0 citations πŸ“…πŸ”‹
  • “Experimental investigation of high-speed WDM-visible light communication using blue, green, and red InGaN Β΅LEDs,” Lu, T., Dai, Y., Lee, T.-Y., Kuo, H.-C., Wu, T. Optics Letters, 2024, 0 citations πŸŒπŸ’‘
  • “Enhanced Performance of AlGaN-Based DUV-LEDs With Passivated Nano-Hole Arrays,” Li, Z., Shen, M.-C., Lai, S., Chen, Z., Wu, T. IEEE Transactions on Electron Devices, 2024, 0 citations πŸ’‘πŸ”¬
  • “Enhancing the performance of AlGaN-based DUV-LEDs with multifocal laser stealth dicing,” Shen, M.-C., Chen, J., Tseng, M.-C., Chen, Z., Wu, T. Optics Express, 2024, 0 citations πŸŒŸπŸ”¬
  • “The impacts of SiO2 atomic-layer-deposited passivation layer thickness on GaN-based green micro-LEDs,” Deng, Y., Chen, J., Li, S., Chen, Z., Wu, T. Semiconductor Science and Technology, 2024, 2 citations βš‘πŸ”§
  • “Improving Modulation Bandwidth and Detection Performance of Green Micro-LEDs with Pre-Strained Structure at Positive Bias,” Lu, T., Lai, S., Dai, Y., Chen, Z., Wu, T. IEEE Electron Device Letters, 2024, 3 citations πŸ™οΈπŸ”Œ
  • “Improving optoelectronic performance and modulation bandwidth of green Β΅-LEDs via a compound pre-strained strategy,” Lu, T., Lee, T.-Y., Lai, S., Kuo, H.-C., Wu, T. Optics Letters, 2024, 5 citations πŸ’‘πŸ“ˆ
  • “Impacts of p-AlGaN Electron Blocking Layer for the Performance of Low Current Injected Green GaN-Based Micro-LEDs,” Lai, C.-H., Yang, D., Lin, Z.-M., Lai, S., Lu, Y. IEEE Transactions on Electron Devices, 2024, 0 citations βš‘πŸ”§
  • “Enhancing the Efficiency of Green micro-LEDs by Optimizing p-Electrode Contact Area Ratios,” Guo, W.-A., Liu, S.-B., Lu, T.-W., Chen, Z., Wu, T.-Z. IEEE Transactions on Electron Devices, 2024, 0 citations πŸ’‘πŸ”Œ
  • “Investigations on Electro-Optical and Photoelectric Detection Performance of GaN-Based micro-LEDs by Removing p-AlGaN Electron-Blocking Layer,” Lu, T.-W., Yang, D.-K., Dai, Y.-R., Chen, Z., Wu, T.-Z. IEEE Transactions on Electron Devices, 2024, 1 citation βš™οΈπŸ“ˆ

Conclusion

Dr. Shouqiang Lai is a highly accomplished researcher with significant contributions to semiconductor materials and Mini/Micro-LED technologies. His prolific output, innovative patents, and leadership in major research projects make him a strong candidate for the Best Researcher Award.