Erwan Hermawan | Experimental methods | Innovative Research Award

Innovative Research Award

Erwan Hermawan
National Research and Innovation Agency, Indonesia
Erwan Hermawan
Affiliation National Research and Innovation Agency
Country Indonesia
Google Scholar ID sGpmYtAAAAAJ&hl
Documents 37
Citations 106
h-index 6
Subject Area Experimental methods
Event Global Energy Awards
ORCID 0000-0002-3486-7089

Erwan Hermawan is a researcher affiliated with the National Research and Innovation Agency of Indonesia whose academic profile is associated with experimental methods. The researcher is represented in scholarly indexing and researcher-identification systems, including Google Scholar and ORCID. The supplied academic profile records 37 documents, 106 citations, and an h-index of 6. These indicators provide a bibliometric description of the research record and should be interpreted in conjunction with the nature, quality, and significance of individual research contributions. [1]

Abstract

Erwan Hermawan is affiliated with the National Research and Innovation Agency in Indonesia and is associated with the subject area of experimental methods. The available researcher information identifies an academic record comprising 37 documents, 106 citations, and an h-index of 6. The profile is additionally associated with an ORCID identifier and a Google Scholar author profile, providing persistent mechanisms for distinguishing and evaluating scholarly output. [2]

Keywords

Experimental methods, Experimental research, Research methodology, Scientific experimentation, Experimental measurement, Research instrumentation, Empirical investigation, Research innovation, Scientific research, Experimental analysis, Research development, Energy research

Introduction

Experimental methods constitute an important component of scientific research because they provide systematic procedures for generating observations, testing hypotheses, evaluating measurements, and assessing reproducibility. Experimental research commonly requires clearly defined methodologies, appropriate instrumentation, controlled conditions, and transparent reporting of procedures and results. Methodological rigor is particularly important when experimental findings are intended to support subsequent scientific or technological development. [3]

Research Profile

The supplied research profile identifies Erwan Hermawan with the National Research and Innovation Agency in Indonesia and places the researcher within the subject area of experimental methods. The profile contains 37 documented scholarly outputs, 106 citations, and an h-index of 6. Bibliometric measures such as citation counts and h-index values can be useful for describing scholarly visibility, although they do not independently establish the scientific quality or originality of individual studies. [1]

Research Contributions

For an academic recognition assessment, relevant evidence may include methodological originality, experimental reproducibility, improvement of measurement procedures, development or application of research instrumentation, and the demonstrated usefulness of experimental findings. Transparent methodological reporting is an important component of research quality and reproducibility. [3]

Publications

The supplied profile records 37 documents associated with the researcher. These documents constitute the publication and scholarly-output base from which the reported citation count and h-index are derived. A complete publication-level assessment would require examination of individual titles, journals or proceedings, publication dates, authorship, subject relevance, methodological content, and citation context. [2]

Research Impact

The supplied bibliometric profile reports 106 citations across 37 documents and an h-index of 6. These indicators suggest that the research output has received measurable scholarly attention. Citation-based indicators, however, vary according to disciplinary norms, publication age, collaboration patterns, database coverage, and citation practices; consequently, they are most appropriately considered alongside qualitative evidence of research contribution and influence. [4]

Award Suitability

The Innovative Research Award associated with the Global Energy Awards provides a recognition context in which research innovation and scholarly contribution may be considered. Based on the supplied information, Erwan Hermawan’s affiliation with the National Research and Innovation Agency, research area in experimental methods, documented research output, citation record, and h-index provide relevant profile-level evidence for consideration.[2]

Conclusion

Erwan Hermawan is a researcher affiliated with the National Research and Innovation Agency in Indonesia whose supplied academic profile is associated with experimental methods. The reported record of 37 documents, 106 citations, and an h-index of 6 provides a concise bibliometric overview of scholarly activity and visibility. [1]

References

    1. ORCID. (2026). ORCID record: Erwan Hermawan, ORCID iD 0000-0002-3486-7089.
      https://orcid.org/0000-0002-3486-7089
    2. Google Scholar. (2026.). Google Scholar author profile: Erwan Hermawan.
      https://scholar.google.com/citations?user=sGpmYtAAAAAJ&hl=en
    3.  Erwan Hermawan. (2024).Case Studies in Chemical and Environmental Engineering
      https://scholar.google.com/citations?view_op=view_citation&hl=en&user=sGpmYtAAAAAJ&citation_for_view=sGpmYtAAAAAJ:_kc_bZDykSQC
    4. Global Energy Awards. (2026). Global Energy Awards official website.
      https://globalenergyawards.org/

Adiarso Adiarso | Experimental Methods | Innovative Research Award

Innovative Research Award

Adiarso Adiarso
National Research and Innovation Agency (BRIN), Indonesia

Adiarso Adiarso
Affiliation National Research and Innovation Agency (BRIN)
Country Indonesia
Google Scholar ID xpuuJuQAAAAJ
Documents 109
Citations 606
h-index 13
Subject Area Experimental Methods
Event Global Energy Awards
ORCID 0000-0002-0999-5556

Adiarso Adiarso is a researcher affiliated with the National Research and Innovation Agency (BRIN), Indonesia, whose academic profile is associated with the subject area of experimental methods. The researcher profile supplied for this recognition article records 109 documents, 606 citations, and an h-index of 13. These indicators provide a bibliometric snapshot of scholarly activity and citation influence and are presented as supplied profile information rather than as an independent assessment of research quality.[1] The recognition considered here is the Innovative Research Award associated with the Global Energy Awards.

Abstract

This article presents an academic recognition profile for Adiarso Adiarso, affiliated with the National Research and Innovation Agency (BRIN), Indonesia, in connection with the Innovative Research Award under the Global Energy Awards. The supplied researcher information identifies Experimental Methods as the principal subject area and reports 109 documents, 606 citations, and an h-index of 13. Bibliometric indicators such as publication counts, citation counts, and the h-index are commonly used to describe dimensions of scholarly productivity and citation impact, although they should be interpreted in relation to disciplinary and career-stage differences. The present profile therefore combines the supplied quantitative indicators with a qualitative description of experimental research relevance without asserting findings or achievements that are not documented in the provided information. [3]

Keywords

Experimental Methods, Experimental Research, Research Methodology, Energy Research, Energy Systems, Laboratory Methods, Experimental Design, Measurement Techniques, Scientific Instrumentation, Data Acquisition, Research Innovation, Energy Technology, Applied Research, Research Evaluation, Global Energy Awards, Innovative Research Award

Introduction

Experimental methods constitute an important component of scientific and engineering research because they provide systematic approaches for obtaining observations, testing hypotheses, validating models, and evaluating technological concepts. Well-designed experiments typically require clearly defined variables, appropriate measurement procedures, controlled conditions where applicable, and reproducible methods for recording and interpreting observations.[3]

Research Profile

The available bibliometric information reports 109 documents and 606 citations, with an h-index of 13. The h-index is a commonly used bibliometric indicator that attempts to combine publication productivity with citation frequency, although it does not by itself measure research quality, societal value, methodological rigor, or the originality of individual publications.[2]

Research Contributions

Based on the supplied subject classification, the research profile can be situated within the methodological dimension of experimental science. Experimental research contributes to scientific knowledge by generating empirical observations that can be compared with theoretical expectations, numerical simulations, or engineering performance requirements. The quality of such contributions depends on appropriate experimental design, measurement accuracy, documentation, uncertainty assessment, and reproducibility.[3]

Publications

The supplied researcher profile records 109 documents. This figure represents the publication/document count provided for this article and should not be interpreted as a manually verified bibliographic inventory. The individual publication titles, journals, years, citation distributions, and DOI identifiers were not supplied as part of the source data.[1]

Research Impact

The supplied bibliometric indicators include 606 citations and an h-index of 13. Citation counts can provide an indication of how frequently published research has been referenced in subsequent scholarly literature, while the h-index provides a combined measure of publication output and citation frequency. Both indicators are affected by disciplinary citation practices, publication age, database coverage, collaboration patterns, and other factors.[2]

Award Suitability

The Innovative Research Award profile is aligned with the supplied subject classification of Experimental Methods and the researcher’s reported scholarly indicators. Experimental methodology is particularly relevant to innovation-oriented research because systematic experimentation can be used to test concepts, characterize systems, validate technical approaches, and generate evidence for further development. [3]

Conclusion

The Innovative Research Award profile emphasizes the relationship between experimental methodology, empirical evidence, and innovation-oriented research. Further assessment of specific research achievements should be based on verified publications, documented experimental contributions, and the formal criteria established for the Global Energy Awards. [2]

References

 

  1. ORCID. (2026). ORCID record for Adiarso Adiarso. ORCID.
    https://orcid.org/0000-0002-0999-5556
  2. Google Scholar. (2026.). Google Scholar author profile: Adiarso Adiarso, Author ID xpuuJuQAAAAJ. Google Scholar.
    https://scholar.google.com/citations?user=xpuuJuQAAAAJ&hl=id
  3. Global Energy Awards. (2026). Global Energy Awards official website.
    https://globalenergyawards.org/

Şükrü KARATAŞ | Experimental methods | Excellence in Research

Prof. Şükrü KARATAŞ | Experimental methods | Excellence in Research

Kahramanmaraş Sütçü İmam University | Turkey

Prof. Şükrü Karataş is a renowned professor in the Department of Physics at Kahramanmaraş Sütçü İmam University (KSÜ). With nearly 100 scientific publications and over 3,200 citations, Prof. Karataş has become a leading figure in the field of semiconductor devices and solar cell technology. His research primarily focuses on the preparation and electrical and dielectric properties of Schottky diodes, MS, MIS, MOS structures, and solar cells, making significant contributions to material science and energy technology.

👨‍🎓Profile

Google scholar

Scopus

Orcid

Early Academic Pursuits 🎓

Prof. Karataş’s academic journey began at Dicle University in Diyarbakır, Turkey, where he earned his B.S. in Physics in 1992. Driven by a passion for understanding the fundamental aspects of physics, he pursued advanced studies at Kahramanmaraş Sütçü İmam University and Gazi University, obtaining his M.S. (1996) and Ph.D. (2003) degrees, respectively. His deep interest in semiconductors and material sciences has been a defining feature of his academic career.

Professional Endeavors 💼

Prof. Karataş has been an integral part of the KSÜ Faculty of Science, starting as a Research Assistant and progressing to a full Professor. He has been involved in numerous research projects, both completed and ongoing, taking on executive roles and contributing to various fields of semiconductor physics and solar energy. His expertise has been sought by national and international symposia, where he has been invited as a speaker, showcasing his influence in the scientific community.

Contributions and Research Focus 🔬

Prof. Karataş is widely recognized for his contributions to semiconductor devices such as Schottky diodes, MS, MIS, and MOS structures, with a focus on their electrical and dielectric properties in relation to temperature, frequency, and radiation. His pioneering work in solar cells has garnered significant attention for its practical applications in renewable energy. The depth of his research in the preparation, analysis, and optimization of these devices is central to his academic identity.

Academic Cites 📑

Prof. Karataş has established himself as a highly respected researcher, amassing over 3,200 citations across nearly 100 published articles. His cited work speaks to the relevance and impact of his research, particularly in semiconductor devices and solar energy systems. His papers are often referenced in studies concerning the electrical and dielectric properties of materials used in high-tech applications, ensuring his influence reaches across a wide range of scientific disciplines.

Research Skills 🔧

Prof. Karataş possesses a diverse skill set, including expertise in the preparation and analysis of semiconductor materials and solar cells. His ability to explore the electrical properties of Schottky diodes and MOS structures under varying conditions such as temperature, frequency, and radiation has contributed significantly to the advancement of semiconductor technology. Additionally, his leadership in executing projects has showcased his ability to collaborate and manage large, complex research efforts.

Teaching Experience 👨‍🏫

Prof. Karataş is a passionate educator who has taught a wide range of advanced courses at the master’s and doctoral levels. His teaching spans subjects related to semiconductors, material science, and solar energy, and he has mentored many graduate students in these fields. His dedication to academic excellence is evident not only through his lectures but also through his role as a graduate advisor, guiding students in their research pursuits and helping shape the next generation of scientists.

🌟 Legacy and Future Contributions

Prof. Karataş’s legacy lies in his pioneering research, impactful publications, and the success of his students. Looking ahead, he aims to expand his work in renewable energy technologies and foster global collaborations to further advance the field of semiconductor physics. His vision ensures that his contributions will continue to influence the scientific community for years to come.

Publications Top Notes

 

 

Hosameldeen Elshekh | Experimental methods | Best Researcher Award

Dr. Hosameldeen Elshekh | Experimental methods | Best Researcher Award

Dr. Hosameldeen Elshekh | Southwest jiaotong University | China

👨‍🎓 Profile

🎓 Early Academic Pursuits

Dr. Hosameldeen Elhadi Abdelrhman Elshekh began his academic journey with a B.Ed. (Honors) in Physics and Mathematics from the University of Gezira, Sudan, in 2009. His exceptional performance and passion for physics and materials science paved the way for his higher education. He earned an M.Sc. in Physics from the same institution in 2016, followed by an M.Sc. Qualifying in Physics from the University of Khartoum in 2013. Currently, he is pursuing a Ph.D. in Physics at Southwest Jiaotong University, China, where he has been conducting advanced research since 2018.

🏫 Professional Endeavors

Dr. Hosameldeen’s professional journey commenced as a University Teaching Assistant at the University of Gezira, Sudan (2011–2014). He later progressed to a Physics Lecturer role (2016–2018), where he developed undergraduate physics courses and mentored students. His focus on curriculum innovation and science outreach programs highlights his dedication to fostering education and promoting science in the community.

🔬 Contributions and Research Focus

With expertise in material science, nanomaterials, and memristive devices, Hosameldeen specializes in thin films and their electrical and magnetic properties. His research integrates theoretical and experimental physics, focusing on memristors, resistive switching memory, and nanostructured materials. His work includes advanced synthesis techniques like electrochemical oxidation and magnetron sputtering, along with material characterization using SEM, EDS, and XRD.

🌍 Impact and Influence

Dr. Hosameldeen has co-authored nine SCI-indexed publications, contributing to advancements in resistive switching memory and bioelectronic devices. His collaborative research with peers worldwide reflects his commitment to fostering interdisciplinary partnerships. His work on TiOx-based memristors and MoSe2 nanosphere arrays demonstrates the potential of his innovations in sustainable technologies and electronics.

📚 Academic Citations

Dr. Hosameldeen’s contributions are recognized globally, with his publications indexed in Web of Science, Google Scholar, and ResearchGate. His research on WOx/TiOy heterojunctions and Zn-Al nanosheets-based memristors has been widely cited, underscoring his influence in the field of materials physics.

🛠️ Technical Skills

Hosameldeen excels in synthesis and characterization of nanomaterials, with hands-on expertise in tools like SEM, EDS, XRD, and advanced techniques like electrochemical oxidation. His skills in developing and testing memristive devices and thin-film materials are complemented by his ability to design and implement laboratory modules for educational purposes.

👨‍🏫 Teaching Experience

With over eight years of teaching experience, Hosameldeen has demonstrated excellence in curriculum development, student mentoring, and laboratory instruction. At the University of Gezira, he played a pivotal role in modernizing the physics curriculum and conducting research workshops. His dedication to science outreach programs showcases his passion for empowering students and local communities through education.

🌟 Legacy and Future Contributions

Dr. Hosameldeen’s research is shaping the future of nanotechnology and electronic devices, offering innovative solutions to scientific challenges. His commitment to advancing materials science and mentoring the next generation of scientists cements his legacy as an influential educator and researcher. Looking ahead, he aims to expand his contributions to global scientific collaboration and continue his exploration of sustainable material technologies.

Top Noted Publications

Nonvolatile behavior of resistive switching memory in Ag/WOx/TiOy/ITO device based on WOx/TiOy heterojunction
  • Authors: Hosameldeen Elshekh, Hongyan Wang, Chuan Yang, Shouhui Zhu
    Journal: Journal of Applied Physics
    Year: 2024
Nonvolatile resistive switching memory behavior of the TiOx-based memristor
  • Authors: Hosameldeen Elshekh, Hongyan Wang, Shouhui Zhu, Chuan Yang, Jiangqiu Wang
    Journal: Chemical Physics
    Year: 2024
An excellent resistive switching memory behaviour based on assembled MoSe2 nanosphere arrays
  • Authors: Mao Shuangsuo, Hosameldeen Elshekh, Mayameen S. Kadhim, Yudong Xia, Guoqiang Fu, Wentao Hou, Yong Zhao, Bai Sun
    Journal: Journal of Solid State Chemistry
    Year: 2019
Effect of crystalline state on conductive filaments forming process in resistive switching memory devices
  • Authors: Guo Tao, Hosameldeen Elshekh, Zhou Yu, Bo Yu, Dan Wang, Mayameen S. Kadhim, Yuanzheng Chen, Wentao Hou, Bai Sun
    Journal: Materials Today Communications
    Year: 2019
The pH-controlled memristive effect in a sustainable bioelectronic device prepared using lotus root
  • Authors: Li T, Y. Xu, M. Lei, Y. Zhao, B. Sun, Hosameldeen Elshekh, L. Zheng, X. Zhang, W. Hou
    Journal: Materials Today Sustainability
    Year: 2020