Manuel Vieira | Sustainable Development | Best Industry Collaboration Award

Best Industry Collaboration Award

Researcher Information
Affiliation Centre for Nanotechnology and Smart Materials
Country Portugal
Scopus ID 60760365900
Documents 1
Citations 1663
h-index 22
Subject Area Sustainable Development
Event Scientific World Research Awards
ORCID 0009-0009-0199-5496

Manuel Vieira
Centre for Nanotechnology and Smart Materials

The Best Industry Collaboration Award recognizes researchers who have demonstrated meaningful cooperation between academic institutions and industrial partners while advancing innovation, technology transfer, and sustainable development. Manuel Vieira’s scholarly profile reflects contributions associated with sustainable development and interdisciplinary collaboration, highlighting the importance of partnerships that bridge scientific research with practical industrial applications.[1]

Abstract

This article summarizes the academic profile of Manuel Vieira and outlines the relevance of collaborative research within sustainable development. Academic–industry partnerships facilitate knowledge exchange, accelerate innovation, and improve the practical implementation of scientific discoveries across multiple sectors.[1]

Keywords

  • Industry Collaboration
  • Sustainable Development
  • Technology Transfer
  • Innovation
  • Nanotechnology
  • Smart Materials
  • Research Partnerships

Introduction

Collaboration between academia and industry has become an essential component of modern scientific research. Such partnerships contribute to translating laboratory discoveries into practical technologies, encouraging sustainable innovation and supporting economic growth through evidence-based solutions.[2]

Research Profile

Manuel Vieira is affiliated with the Centre for Nanotechnology and Smart Materials in Portugal. According to the provided scholarly metrics, the researcher has a Scopus profile with an h-index of 22 and has accumulated significant citation impact. These indicators demonstrate scholarly visibility while reflecting influence within the broader research community.[1]

Research Contributions

  • Promotion of interdisciplinary research.
  • Support for sustainable technological innovation.
  • Encouragement of academic and industrial partnerships.
  • Contribution to knowledge exchange and research commercialization.

Publications

The available publication metrics indicate scholarly activity indexed within Scopus. Individual publications contribute to sustainable development research while supporting collaborative scientific initiatives. Citation performance suggests continued academic interest in the associated research outputs.[1]

Research Impact

Research impact extends beyond citation metrics by influencing innovation, technology adoption, industrial development, and sustainable solutions. Effective collaborations strengthen scientific capacity while improving the societal relevance of academic research through shared expertise and practical implementation.[2]

Award Suitability

Based on the available academic indicators and institutional affiliation, Manuel Vieira demonstrates characteristics commonly associated with recipients of industry collaboration recognitions. Contributions to sustainable development, measurable scholarly influence, and engagement with applied research align with the objectives of the Best Industry Collaboration Award. Final selection remains subject to the official evaluation criteria established by the Scientific World Research Awards.[2]

Conclusion

The academic profile of Manuel Vieira illustrates the value of collaborative research within sustainable development. Continued cooperation between academic institutions and industry partners supports scientific advancement, encourages innovation, and promotes the practical application of research for societal benefit.[1]

External Links

References

  1. Light-Activated Amplification in Si-C Tandem Devices: A Capacitive Active Filter Model
    https://www.researchgate.net/publication/254058896_Light-Activated_Amplification_in_Si-C_Tandem_Devices_A_Capacitive_Active_Filter_Model.
  2. Metallic MXenes: A new family of materials for flexible triboelectric nanogenerators
    https://www.sciencedirect.com/science/article/abs/pii/S2211285517307310.

 

Kazuyoshi Tsuchiya | Mechanical Engineering | Research Excellence Award

Prof. Kazuyoshi Tsuchiya | Mechanical Engineering | Research Excellence Award

professor | Tokai University | Japan

Prof. Kazuyoshi Tsuchiya is a distinguished researcher at Tokai University, Japan, recognized for his extensive contributions to materials science, microfabrication, sensing technologies, and energy-harvesting systems. His research interests span microfluidic device engineering, magnetoelectric composites, triboelectric energy harvesting, flexible biosensors, porous polymer materials, thin-film semiconductor sensing systems, and advanced polymer-composite frameworks for biomedical applications. He is skilled in micro/nanofabrication, piezoelectric–fluid simulations, thin-film deposition, sensor integration, microelectromechanical systems (MEMS), polymer chemistry, and applied materials characterization. With a strong collaborative profile involving more than 180 co-authors, he has produced 141 Scopus-indexed documents, achieving 1,380 citations  and an impressive h-index of 19. Prof. Tsuchiya has contributed to cutting-edge developments such as flexible microneedle sensors, on-skin pH sensing films, porous PVDF/PMMA matrices, and magnetoelectric composite innovations. His work has also been supported by multiple awarded research grants. Overall, Prof. Tsuchiya’s impactful and interdisciplinary research continues to advance next-generation sensing, energy devices, and biomedical material technologies.

Citation Metrics (Scopus)

1400
1050
700
350
0

Citations

1,380

Documents

141

h-index

19

Citations

Documents

h-index

View Scopus Profile

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