Dr. Howard Qingsong Tu , Rochester Institute of Technology, United States.
Howard Qingsong Tu, Ph.D. is an Assistant Professor at Rochester Institute of Technology and Associate Director of the Battery Prototype Center. His career focuses on advancing sustainable energy and environment systems, especially through the mechanics of electrochemistry in solid-state batteries and water desalination. Dr. Tu completed his Ph.D. at UC Berkeley, followed by a postdoctoral fellowship at Lawrence Berkeley National Lab. He has co-founded a company, mentored students, and led numerous research projects funded by institutions such as the DOE, NSF, and DoD. He is passionate about bridging lab-scale innovations with industrial applications.
Ph.D. in Civil & Environmental Engineering, University of California, Berkeley (2017)
M.S. & B.S. in Mechanical Engineering, Beijing Institute of Technology (2011)
Postdoc in Material Science, Lawrence Berkeley National Lab (2017-2021)
Professional Experience:
Assistant Professor, Rochester Institute of Technology (2021-present)
Associate Director, Battery Prototype Center (2022-present)
Co-Founder & CEO, CALSTERMER LLC (2014-2018)
Suitability for The Award
Dr. Howard Qingsong Tu is a highly suitable candidate for the Best Researcher Award due to his remarkable contributions to sustainable energy, environmental preservation, and electrochemical systems. His work spans from cutting-edge renewable energy storage solutions to innovative environmental technologies, addressing critical global challenges in energy efficiency, pollution control, and resource sustainability.
Professional Development ()
Howard Qingsong Tu, Ph.D., has made significant strides in energy storage, renewable energy, and environmental sustainability research. He developed the open-source TECM (Thermo-electro-chemo-mechanics) package and led high-impact publications and patent filings in solid-state battery technologies. Collaborating with the Battery Prototype Center at RIT, he scales up lab innovations to industrial applications. He also spearheaded projects on wastewater treatment and CO2 capture, funded by top organizations like DOE and NSF. Through teaching, mentoring, and organizing scientific symposia, Dr. Tu nurtures the next generation of researchers while expanding his expertise in clean energy solutions.
Research Focus
Dr. Tu’s research spans three primary areas: electrochemistry mechanics, renewable energy storage, and environmental sustainability. He investigates the mechanics behind electrochemical processes in solid-state batteries, enhancing safety and efficiency in energy storage systems. His work also addresses sustainable water solutions, including ionic transport and membrane fracture in desalination technologies. Further, he explores clean energy alternatives, focusing on zero-wastewater discharge and CO2 reduction techniques. His projects aim to bridge fundamental research with practical solutions for renewable energy and environmental preservation, collaborating with industry and research hubs.
Awards and Honors (
US-EDA Build Back Better Act ($1.3M/yr) – Co-PI
DoE-VTO Battery500 Program ($900K) – Co-PI
DoD-ARO Young Investigator Program ($120K/yr) – PI
NYSP2I Pollution Prevention Fund ($150K/yr) – PI
ACS-ND Grant ($50K/yr) – PI
Publication Top Notes
Effect of solid-electrolyte pellet density on failure of solid-state batteries – Nature Communications, 2024 – Cited by: 7
Structural insight and modulating of sulfide-based solid-state electrolyte for high-performance solid-state sodium sulfur batteries – Nano Energy, 2024 – Cited by: 0
Desalination performance investigation of TpPa-1 COF and MIL-47(V) MOF bilayer membranes using molecular dynamics simulation – Desalination, 2024 – Cited by: 2
The Microscopic Mechanism of Lithiation and Delithiation in the Ag/C Buffer Layer for Anode-Free Solid-State Batteries – Advanced Energy Materials, 2024 – Cited by: 3
Li Dynamics in Mixed Ionic-Electronic Conducting Interlayer of All-Solid-State Li-metal Batteries – Nano Letters, 2024 – Cited by: 1
Interplay of Interfacial Adhesion and Mechanical Degradation in Anode-Free Solid-State Batteries – Journal of the Electrochemical Society, 2024 – Cited by: 0
Prof. Edip Bayram is a distinguished professor in the Department of Chemistry at Akdeniz University, Turkey. With a Ph.D. in Chemistry, he has expertise in chemical engineering, electrochemical processes, and materials science. His research focuses on nanomaterials, electrochemical energy storage, and environmental chemistry. Bayram has published extensively in top journals and has served in various academic and administrative roles, including Assistant Director of the Institute and member of several research committees. His work in developing advanced materials and technologies is highly regarded in the scientific community.
Prof. Edip Bayram’s extensive academic background and contributions make him a strong candidate for the Best Researcher Award in the field of nanobiotechnology. His research portfolio spans across various fields of chemistry, nanomaterials, electrochemistry, and energy storage systems, with particular emphasis on the synthesis and application of graphene-based materials.
Education:
Doctorate in Chemistry, Akdeniz University, Turkey (2005-2011)
Postgraduate in Chemistry, Akdeniz University, Turkey (2002-2005)
Undergraduate in Chemistry, Akdeniz University, Turkey (1997-2002)
Experience:
Professor at Akdeniz University, Faculty of Science, Department of Chemistry (2024-Present)
Associate Professor at Akdeniz University (2017-2024)
Assistant Professor at Akdeniz University (2011-2017)
Research Assistant at Akdeniz University (2005-2011)
Assistant Director at Akdeniz University, Institute of Science (2022-Present)
Professional Development
Prof. Edip Bayram is a distinguished academic at Akdeniz University, where he serves as a Professor in the Chemistry Department. His expertise spans Chemical Engineering, Electrochemical Processes, and Material Science. He earned his Doctorate in 2011 and has contributed extensively to research on graphene, electrochemical energy storage, and water treatment technologies. He’s actively involved in thesis advising and has served on academic juries for numerous doctoral and postgraduate exams. Prof. Bayram’s impactful work is reflected in his numerous publications and contributions to international journals.
Research Focus
Prof. Edip Bayram specializes in Chemical Engineering with a keen focus onelectrochemical processes and material science. His research emphasizes graphene-based materials, electrochemical energy storage systems, and advanced water treatment technologies. He explores the development of sustainable materials and innovative energy solutions, aiming to enhance the efficiency and environmental impact of chemical processes. Prof. Bayram’s work contributes significantly to nanomaterials, batteries, and supercapacitors, reflecting his commitment to advancing green technologies and clean energy.
Publications
“Enhanced Performance for Li & Na Ion Battery Anodes by Charge Modulation of Interface Through SiC4 and SiN1C3 Active Centers on Silicon Nitrogen Co‐Doped Graphene”
“Preparation of Nitrogen‐Doped Graphene with Hollow Nano‐Hemispheres from FexOy@Fe‐N‐GN: Towards High Capacity and Durable Anode for Li‐Ion Batteries by Chemical Modifications”
“Scalable synthesis of nitrogen and nitrogen–silicon co-doped graphene: SiC4 and SiN1C3 as new active centers for boosting ORR performance”
International Journal of Hydrogen Energy, 2023 [DOI: 10.1016/j.ijhydene.2023.01.264]
“Cürufun Kristal Viole, Kobalt (II) Nitrat ve Krom (III) Nitrat Moleküllerinin Sulu Çözeltilerinden Uzaklaştırılması İçin Adsorpsiyon Özelliğinin Araştırılması”
Türk Doğa ve Fen Dergisi, 2020 [DOI: 10.46810/tdfd.711724]
Conclusion
Prof. Edip Bayram is an exceptional candidate for the Best Researcher Award in Nanobiotechnology. His research accomplishments in nanomaterials, particularly in the development and application of graphene-based technologies, align with the forefront of innovation in nanobiotechnology. His contributions to energy storage systems, biosensors, and environmental protection, coupled with his academic leadership, solidify his standing as a leading researcher in this domain. Prof. Bayram’s work holds significant potential for advancements in both fundamental science and practical applications, making him a deserving recipient of this prestigious award.