Mayara Melo | Energy Planning | Best Researcher Award

Best Researcher Award

                  Mayara Melo
Affiliation Universidade Estadual de Campinas
Country Brazil
Scopus ID 59911449700
Documents 58
Citations 2
h-index 1
Subject Area Energy Planning
Event Global Tech Excellence Awards
ORCID 0000-0003-4569-6788

Mayara Melo
Universidade Estadual de Campinas

Mayara Melo is a researcher affiliated with Universidade Estadual de Campinas whose academic work contributes to the field of energy planning, environmental sustainability, and institutional greenhouse gas mitigation. Her research emphasizes evidence-based environmental management and sustainable development practices within higher education institutions, reflecting a commitment to responsible planning and long-term environmental stewardship.[1]

Abstract

Mayara Melo has developed scholarly contributions focused on energy planning, environmental responsibility, and sustainability practices within higher education institutions. Her published studies investigate greenhouse gas inventories, institutional mitigation strategies, and socio-environmental responsibility through systematic analysis and comparative evaluation. These investigations support informed environmental governance and encourage sustainable campus management aligned with international climate objectives. Her academic activities demonstrate interdisciplinary engagement by integrating environmental assessment, planning methodologies, and institutional sustainability frameworks while promoting practical approaches that assist universities in reducing environmental impacts and advancing long-term sustainable development initiatives.[1][2]

Keywords

Energy Planning, Sustainability, Greenhouse Gas Emissions, Net-Zero Emissions, Environmental Management, Higher Education, Climate Strategy, Carbon Mitigation, Socio-Environmental Responsibility, Sustainable Development.

Introduction

Mayara Melo’s academic activities concentrate on sustainability assessment and energy planning within university environments. Her work addresses environmental performance through practical research supporting climate mitigation, institutional responsibility, and sustainable management while encouraging scientifically informed decision-making for higher education organizations.[1]

Research Profile

Her research profile reflects interdisciplinary interests combining environmental science, sustainability planning, institutional assessment, and climate policy. Through analytical studies, she examines practical approaches for measuring environmental impacts and improving organizational sustainability within academic institutions using evidence-based methodologies.[2]

Research Contributions

Mayara Melo has contributed to research involving greenhouse gas inventories, institutional emission reduction strategies, and socio-environmental responsibility comparisons among higher education institutions. These contributions provide useful evidence supporting environmental planning, sustainability reporting, and responsible resource management initiatives.[1][2]

Publications

Her publications emphasize institutional sustainability, greenhouse gas mitigation, environmental governance, and socio-environmental responsibility. Published research demonstrates the application of analytical frameworks that support universities in developing effective sustainability policies aligned with broader environmental objectives.[1][2]

Research Impact

The research supports institutional sustainability planning by providing structured assessments of environmental performance and mitigation opportunities. Its practical relevance assists universities in understanding climate-related responsibilities while strengthening environmental governance through measurable sustainability indicators and informed planning strategies.[1]

Award Suitability

Mayara Melo’s scholarly activities demonstrate consistent engagement with sustainability research and environmental planning. Her contributions to institutional climate strategies and responsible environmental management align with the objectives recognized by the Global Tech Excellence Awards for impactful academic achievement.[1]

Conclusion

Mayara Melo’s research portfolio highlights a commitment to advancing sustainable institutional practices through environmental assessment and energy planning. Her academic contributions support practical climate action initiatives and reflect continued engagement with interdisciplinary sustainability research within higher education environments.[1][2]

References

  1. Melo, M., et al. (2025). Diagnosis of Greenhouse Gas Emissions and Mitigation Strategies at the State University of Campinas to Achieve Net-Zero Emissions. In Sustainable Development Proceedings. Springer.
    https://doi.org/10.1007/978-3-031-96251-6_18
  2. Melo, M., et al. (2021). Responsabilidade Socioambiental: uma comparação entre instituições de ensino superior = Socio-environmental Responsibility: A Comparison Between Higher Education Institutions. Bibliomar.
    https://www.periodicoseletronicos.ufma.br/index.php/bibliomar/article/view/16936
  3. Elsevier. (n.d.). Scopus author details: Mayara Melo, Author ID 59911449700. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=59911449700

Phani Kumar Chittala | Electrical Energy | Excellence in Research

Dr. Phani Kumar Chittala | Electrical Energy | Excellence in Research

Vishnu Institute of Technology, Bhimavaram | India

Dr. Phani Kumar Chittala is a researcher in power systems engineering with expertise in renewable energy integration, power quality enhancement, and intelligent control techniques. His work focuses on solar PV systems, UPQC frameworks, and AI-driven optimization methods for modern electrical networks. He has authored numerous journal and conference publications, including contributions to Recent Advances in Electrical & Electronic Engineering and Journal of Circuits, Systems and Computers, with growing citation impact. His collaborations with international researchers reflect strong interdisciplinary engagement. His research advances resilient and efficient energy systems, contributing to sustainable power infrastructure and improved grid performance in real-world applications.

Citation Metrics (Scopus)

60

40

20

0

Citations
50

Documents
12

h-index
3

🟦 Citations 🟥 Documents 🟩 h-index

View Scopus Profile
           View ORCID Profile
        View Google Scholar Profile
        View ResearchGate Profile

Featured Publications


Power quality improvement for a hybrid renewable farm using UPQC.

– In Proceedings of the International Conference on Artificial Intelligence and Smart Systems (ICAIS 2021). IEEE. (2021). Citefd By: 36

A new topology for power factor correction using resonant converters.

– International Journal of Soft Computing and Engineering, 3(4). (2013). Cited By: 9

An adaptive regulatory approach to improve the power quality in solar PV-integrated low-voltage utility grid.

– Journal of Circuits, Systems and Computers, 31(17), 2250301. (2022). Cited By: 8

Assessment of power quality enhancement in a grid-tied PV network via ANN-based UPQC.

– Recent Advances in Electrical & Electronic Engineering, 17(5). (2024).  Cited By: 4

Shuangke Liu | Energy Conversion | Best Researcher Award

Mr. Shuangke Liu | Energy Conversion | Best Researcher Award

Associate Professor | National University of Defense Technology | China

Mr. Liu Shuangke is an associate professor and master’s supervisor at the National University of Defense Technology with extensive expertise in high-specific-energy lithium-sulfur and lithium-metal batteries as well as fiber-shaped batteries. He earned his Ph.D. from the National University of Defense Technology and has built a strong foundation in materials science and electrochemistry. Throughout his professional career, he has led numerous research projects, published over 40 papers in reputed journals such as Nature Communications, Energy & Environmental Science, Advanced Functional Materials, and Chem. Soc. Rev., and applied for 15 patents while authoring a monograph. His research interests focus on innovative battery materials, structural design of hollow carbon frameworks, gradient multicomponent solid electrolyte interphases, spin modulation, and orbital strengthening for high-voltage cathodes. He has mentored students who have won multiple awards, guided theses recognized at provincial and national levels, and contributed actively to the scientific community as a youth editorial board member for journals including Electrochemistry and Carbon Neutralization. Liu Shuangke has received various honors for teaching excellence and research achievements. His research skills include advanced electrochemical analysis, materials synthesis, battery design, and interphase engineering, reflecting both innovation and practical impact. His work has garnered 1,593 citations by 1,392 documents, with 47 documents and an h-index of 25, demonstrating high visibility and influence in the field of energy storage and battery research.

Profiles: Scopus | ORCID | ResearchGate        

Featured Publications

Liu, S., Yao, Z., Fu, T., Pan, T., Luo, C., Pang, M., Xiong, S., Guo, Q., Li, Y., Zheng, C., Sun, W., & Zhou, G. (2025). Dynamic doping and interphase stabilization for cobalt-free and high-voltage lithium metal batteries. Nature Communications.

Liu, S., [Authors as above]. (2025). In situ partial-cyclized polymerized acrylonitrile-coated NCM811 cathode for high-temperature ≥ 100 °C stable solid-state lithium metal batteries. Nano Micro Letters.

Liu, S., Pan, T., Li, Y., Yao, Z., Zhu, Y., Wang, X., Wang, J., Zheng, C., & Sun, W. (2025). Research advances on lithium-ion batteries calendar life prognostic models. Carbon Neutralization.

Integrated online identification of aerodynamic and thrust parameters for air-breathing aircraft. Conference Paper.

Dr. Wen Zhang | Batteries deep learning | Best Researcher Award

Dr. Wen Zhang | Batteries deep learning | Best Researcher Award

Doctorate at Yeungnam University | South Korea

Professional Profile

Google Scholar

🎓 Educational Background

Wen Zhang (张雯) has pursued a diverse and enriching academic journey, demonstrating her passion for design and engineering. She earned her Bachelor’s degree in Industrial Design from Chengdu Neusoft University in China, graduating in June 2021 with a GPA of 2.73/4.0. Following this, Wen advanced her studies in Mechanical Engineering at Yeungnam University, South Korea, where she completed her Master’s degree in August 2024 with an impressive GPA of 4.05/4.5. She is now delving deeper into her field by pursuing a Doctoral degree in Mechanical Engineering at the same university, starting in September 2024.

💻 Skills and Expertise

Wen Zhang possesses a robust set of skills and expertise that align perfectly with her academic and professional pursuits.

🌐 Language Proficiency

As a native Mandarin speaker, Wen excels in communication in her mother tongue. Additionally, she has demonstrated fluency in English, underscored by her impressive TOEFL score of 92, which highlights her strong linguistic and cross-cultural communication abilities.

🛠️ Software Proficiency

Wen has mastered a wide array of software tools critical for design and engineering. Her expertise includes CAD (Computer-Aided Design) for technical and industrial design applications, Photoshop (PS) and Illustrator (AI) for advanced graphic design, CorelDRAW (CDR) for vector illustration, and After Effects (AE) for motion graphics and video editing. She is also skilled in Python programming, showcasing her versatility in computational tasks and problem-solving.

Publications Top Noted📝

Emerging two-dimensional (2D) MXene-based nanostructured materials: Synthesis strategies, properties, and applications as efficient pseudo-supercapacitors

Authors: Rui Wang, Won Young Jang, Wen Zhang, Ch Venkata Reddy, Raghava Reddy Kakarla, Changping Li, Vijai Kumar Gupta, Jaesool Shim, Tejraj M Aminabhavi

Journal: Chemical Engineering Journal

Year: 2023

Lithium-Ion Battery Life Prediction Using Deep Transfer Learning

Authors: Wen Zhang, RSB Pranav, Rui Wang, Cheonghwan Lee, Jie Zeng, Migyung Cho, Jaesool Shim

Journal: Batteries

Year: 2024