Gratien Habarurema | Inorganic Chemistry | Innovative Research Award

Innovative Research Award

          Gratien Habarurema
Affiliation University of Rwanda-College of Science and Technology
Country Rwanda
Scopus ID 55875879400
Documents 29
Citations 196
h-index 6
Subject Area Inorganic Chemistry
Event International Research Chemistry Awards

The Innovative Research Award recognizes the scientific contributions of Gratien Habarurema, a researcher affiliated with the University of Rwanda-College of Science and Technology. His scholarly work in Inorganic Chemistry is represented through internationally indexed publications and measurable bibliometric indicators including publication output, citations, and h-index. This article summarizes the research profile and academic impact relevant to recognition within the International Research Chemistry Awards.[1]

Abstract

Gratien Habarurema has established a documented academic profile through peer-reviewed research in the field of inorganic chemistry. His scholarly work, indexed in international scientific databases, demonstrates consistent research productivity supported by measurable publication output, citation performance, and bibliometric indicators. These achievements provide objective evidence of scientific contribution while reflecting continued engagement in advancing chemical sciences through high-quality research and international scholarly communication.[2]

Keywords

Inorganic Chemistry, Coordination Chemistry, Chemical Synthesis, Catalysis, Crystal Structure, Analytical Chemistry, Transition Metals, Materials Chemistry, Research Impact, Scientific Publications, Chemical Characterization, Experimental Research, Coordination Compounds, Structural Chemistry, Scholarly Research..[4]

Introduction

Scientific awards play an important role in recognizing researchers who demonstrate excellence through innovative discoveries, high-quality publications, and meaningful contributions to their fields. Evaluation for academic recognition typically combines quantitative bibliometric indicators—including publication output, citation count, and h-index—with qualitative assessments by expert reviewers. Together, these measures provide a balanced framework for identifying sustained research excellence and scholarly impact.[1]

Research Profile

Gratien Habarurema is a researcher at the University of Rwanda-College of Science and Technology with an established academic profile in inorganic chemistry. According to Scopus, he has published 29 indexed research documents that have received 196 citations, resulting in an h-index of 6. These bibliometric indicators reflect sustained research productivity, scholarly visibility, and continued contributions to the advancement of chemical sciences.[1]

Research Contributions

Gratien Habarurema has contributed to inorganic chemistry through peer-reviewed research focused on advancing scientific knowledge, experimental methodologies, and chemical investigations. His publications support the dissemination of reliable research findings, encourage international scientific collaboration, and enhance understanding of inorganic materials and related chemical processes within the broader chemistry research community.[3]

Publications

The publication portfolio demonstrates sustained scholarly productivity through articles published in internationally indexed, peer-reviewed journals. These publications address topics related to inorganic chemistry, contribute to the development of scientific knowledge, and support collaboration within the global research community. The research output also reflects ongoing commitment to high-quality scientific investigation and academic dissemination.[1]

Research Impact

The researcher’s citation record demonstrates that published work has gained recognition within the scientific community and has contributed to ongoing research in inorganic chemistry. Bibliometric indicators such as citation count and h-index reflect measurable academic influence, while continued publication activity, collaboration, and dissemination of research findings are expected to further strengthen international visibility and scholarly impact.[2]

Award Suitability

Considering the documented publication record, citation performance, institutional affiliation, and active contribution to inorganic chemistry, the researcher demonstrates qualifications appropriate for consideration within the International Research Chemistry Awards, subject to comprehensive peer review.[3]

Conclusion

Gratien Habarurema’s academic profile demonstrates sustained research productivity, internationally indexed publications, and measurable scholarly impact within the field of inorganic chemistry. His contributions to scientific research, supported by citation-based indicators and peer-reviewed publications, reflect an active commitment to advancing chemical sciences. Continued collaboration and innovative research are expected to further enhance the visibility and influence of his work within the international scientific community.[4]

References

    1. Elsevier. (n.d.). Scopus Author Details: Gratien Habarurema, Author ID 55875879400.
      https://www.scopus.com/pages/authors/55875879400
    2. International Research Chemistry Awards. (2026).
      https://researchchemistry.org
    3. Habarurema, G., Hosten, E., Mukiza, J., et al. (2026). Organometallic complex of fac-[Re(CO)3]+ moiety with a modified tetraamine macroheterocyclic molecule dodecahydropyrimido[2′,1′:3,4]pyrazino[1,2-a]pyrimidine chelate: Synthesis and X-ray crystallography characterization. Journal of Chemical Crystallography, 56, Article 24.
      https://doi.org/10.1007/s10870-026-01085-6
    4. Mukiza, J., Habarurema, G., Katandula, J., Rugamba, A., & Kagisha, V. (2024). Proline, a unique amino acid whose polymer, polyproline II helix, and its analogues are involved in many biological processes: A review. Amino Acids, 56, Article 50.
      https://doi.org/10.1007/s00726-024-03410-9

Mrs. Jing Nie | Inorganic Chemistry | Sustainable Chemistry Pioneer Award

Mrs. Jing Nie | Inorganic Chemistry | Sustainable Chemistry Pioneer Award

Ningxia University, China

Author Profile

Orcid

🎓 Academic Background

Mrs. Jing Nie holds a Doctorate (Ph.D.) in Environmental Engineering from Yamaguchi University, Japan, which she completed between October 2019 and September 2022. Prior to this, she earned a Master’s degree in Materials Physics and Chemistry in 2013 and a Bachelor’s degree in Applied Chemistry in 2010, both from Jiangxi Normal University, China. Her multidisciplinary education provides her with a broad and deep understanding of chemical materials science, environmental systems, and energy technologies.

👩‍🔬 Professional Profile

Mrs. Jing Nie is currently serving as an Associate Professor at the School of Materials and New Energy, Ningxia University, located in Yinchuan, Ningxia, China. With a strong academic background and a focus on applied scientific research, she has significantly contributed to the advancement of membrane materials and gas separation technologies. Her work is centered on clean energy applications and the modification of porous carbon materials for natural gas upgrading and hydrogen purification.

🧪 Research Interests

Mrs. Jing Nie’s specialized research areas include:
Gas Separation; Membrane Materials Preparation; Preparation and Modification of Carbon Porous Materials; H₂-Related Gas Pairs Separation; and Natural Gas Upgrading. Her research focuses on the design, fabrication, and performance enhancement of advanced membrane systems for sustainable energy and environmental applications. She emphasizes innovative approaches to improve the efficiency and selectivity of membrane-based separation techniques, particularly targeting hydrogen purification and methane recovery.

🏢 Professional Experience

Mrs. Jing Nie began her career at Ningxia University in September 2013, working in the Photovoltaic Materials Key Laboratory. During this time, she contributed to various research initiatives focused on photovoltaic materials and renewable energy solutions. Since October 2022, she has been affiliated with the School of Materials and New Energy, continuing her research and teaching endeavors while mentoring students and leading innovative projects in membrane and materials science.

Notable Publications📝


📝Effect of Chemical Vapor Deposition of Toluene on Gas Separation Performance of Carbon Molecular Sieve Membranes
  • Authors: Jing Nie; Norimasa Yoshizawa; Kazuhiro Tanaka*

  • Journal: Journal of Porous Materials

  • Year: 2022

Dr. Kexin Li | Inorganic Chemistry | Best Researcher Award

Dr. Kexin Li | Inorganic Chemistry | Best Researcher Award

Doctorate at China University of Geosciences, Beijing | China

Kexin Li is a distinguished Ph.D. candidate in Environmental Science and Engineering at the China University of Geosciences, Beijing. Her academic endeavors center on vital research areas including backfill materials for mine goafs, environmental functional materials, waste resource utilization, and the solidification/stabilization of heavy metals.

Professional Profile

Orcid

🌍 Academic and Professional Background

I am currently pursuing a PhD in Environmental Science and Engineering at the China University of Geosciences, Beijing. My research primarily focuses on backfill materials for mine goafs, environmental functional materials, waste resource utilization, and the solidification/stabilization of heavy metals. My academic journey has equipped me with in-depth expertise in these areas, and I am committed to promoting sustainable environmental management and pollution control.

🔬 Areas of Research

Kexin Li’s research encompasses several pivotal domains in environmental science and engineering. She focuses on backfill materials for mine goafs, aiming to enhance the safety, stability, and sustainability of mining operations. Her work in environmental functional materials explores innovative solutions to address environmental challenges and improve material performance for ecological applications. Additionally, she is dedicated to advancing waste resource utilization, creating efficient methods to repurpose industrial and municipal waste into valuable resources. Another critical area of her research involves the solidification and stabilization of heavy metals, ensuring the effective management and reduction of environmental risks associated with hazardous materials. These research interests collectively contribute to sustainable environmental practices and pollution mitigation.

🧪 Research Contributions

I have actively participated in national projects, including the National Key Research and Development Program and the National Natural Science Foundation of China. My notable achievements include:

Developing low-carbon cemented backfill materials.

Investigating the environmental impact of solid waste utilization.

Publishing research in prestigious journals such as CSCM, CBM, and Materials.

✍️ Reviewer Role

As a reviewer for the International Journal of Materials Science and Applications, I contribute to advancing global knowledge in environmental science and engineering, further showcasing my commitment to the field.

Publications Top Noted

Source Tracing Analysis of the Exceedance of NH3-N and CODMn in Shallow Groundwater in the Central Typical Area of the Yangtze River Delta

Authors: Xiangmei Li, Kexin Li, Shuqin Li, Zehai Li, Lili Wan, Wei Guo

Journal: Scientific Reports

Year: 2024

Innovative Synthesis of Low-Carbon Cemented Backfill Materials through Synergistic Activation of Solid Wastes: An Integrated Assessment of Economic and Environmental Impacts

Authors: Kexin Li, Xilin Li, Jun Yao, Qi Sun, Haowen Xue, Chuanyang Du

Journal: Case Studies in Construction Materials

Year: 2024

The Effect of Acid Mine Drainage on the Properties of an All-Solid Waste Paste Backfill Body Based on Oil Shale Residue

Authors: Hao Ling, Xilin Li, Haowen Xue, Qi Sun, Ling Liu, Chuanyang Du, Kexin Li

Journal: Construction and Building Materials

Year: 2024

Experimental Study on Microstructure and Erosion Mechanisms of Solid Waste Cemented Paste Backfill under the Combined Action of Dry–Wet Cycles and Sulphate Erosion

Authors: Kexin Li, Xilin Li, Chuanyang Du, Haowen Xue, Qi Sun, Ling Liu

Journal: Materials

Year: 2022

Preparation of Cemented Oil Shale Residue–Steel Slag–Ground Granulated Blast Furnace Slag Backfill and Its Environmental Impact

Authors: Xilin Li, Kexin Li, Qi Sun, Ling Liu, Jianlin Yang, Haowen Xue

Journal: Materials

Year: 2021