Dr. Junjie Gong | Innovative Leadership | Best Researcher Award

Dr. Junjie Gong | Innovative Leadership | Best Researcher Award

Guangxi University, China

Profiles 

Early Academic Pursuits 🌱

Junjie Gong’s academic journey began with a deep-rooted interest in mechanical engineering. Born in 1995, he pursued his undergraduate studies at Wuhan Polytechnic University, earning a Bachelor of Science degree in mechanical manufacturing and its automation in 2018. His academic foundation laid the groundwork for his evolving research aspirations. Demonstrating a keen interest in advancing his expertise, he embarked on a Ph.D. program in mechanical engineering through a joint cultivation initiative involving Guangxi University in Nanning and Zhejiang University in Hangzhou. This unique collaboration provided him with a multifaceted learning environment, combining theoretical insights and practical applications.

Professional Endeavors and Research Focus 🚀

Junjie Gong’s research endeavors span a wide spectrum of innovative domains, including nonlinear system control, motion control of autonomous vehicles, vehicle system dynamics, and mechanical dynamics. His meticulous approach to research has positioned him as a promising scholar in the field of mechanical engineering. Gong has collaborated extensively with the LiuGong Global R&D Center in Guangxi, China, contributing to the development of cutting-edge hydraulic excavators. This partnership signifies his ability to bridge academia and industry, underscoring his commitment to applying theoretical knowledge to solve real-world engineering challenges.

Contributions to Science and Engineering 📚

Gong’s scholarly output includes 10 publications in renowned scientific journals indexed in SCI and Scopus, reflecting the high impact and relevance of his research. In addition to his role as an author, he has contributed to the academic community by serving as a peer reviewer for journals, ensuring the quality and integrity of scientific discourse. His research has gained recognition through its citation index, which currently stands at eight—a testament to the influence and applicability of his findings. Beyond academia, Gong has demonstrated an innovative spirit by securing 11 authorized Chinese patents, with an additional five patents under examination. These patents highlight his ingenuity and commitment to advancing mechanical engineering technologies.

Accolades and Recognition 🏅

While Junjie Gong has yet to receive formal professional memberships or editorial appointments, his accomplishments in patent innovation and academic publications speak volumes about his dedication and talent. His ability to lead research projects and publish extensively at a young age is a remarkable achievement. His collaborative efforts with industry further amplify his profile, positioning him as a rising star in the mechanical engineering domain.

Impact and Influence 🌟

Gong’s collaborative work with LiuGong Global R&D Center has significantly impacted the field of hydraulic excavators, particularly in enhancing their motion control systems and mechanical dynamics. By integrating his research into industrial applications, Gong has contributed to technological advancements that improve efficiency, safety, and reliability. His work in nonlinear system control and path planning is particularly relevant in the era of autonomous vehicles, offering solutions to complex challenges in navigation and system stability.

Legacy and Future Contributions 🔮

Junjie Gong’s academic journey is just beginning, yet his contributions have already left a mark on the field of mechanical engineering. As he progresses in his Ph.D. studies, his research is poised to address more complex challenges in motion control and mechanical dynamics. Gong’s ability to innovate, coupled with his collaborative approach, positions him as a thought leader in his field. His future endeavors are likely to expand into interdisciplinary areas, merging mechanical engineering with emerging technologies such as artificial intelligence and robotics.

📝Notable Publications

Research on the residual vibration suppression of a controllable mechanism robot

Authors: J. Gong, G. Cai, W. Wei, K. Zhang, S. Peng

Journal: IEEE Access

Year: 2022

Kinematic performance analysis of a controllable mechanism welding robot with joint clearance

Authors: J. Gong, W. Wei, G. Cai, Y. Liu, S. Peng

Journal: MATEC Web of Conferences

Year: 2020

Path-Tracking Cascade Control of Hydraulic-Tracked Vehicles Based on Port-Controlled Hamiltonian Model

Authors: J. Gong, S. Guo, H. Shen, W. Wei, Y. Long

Journal: IEEE Transactions on Intelligent Vehicles

Year: 2024

Finite Element Model of Kinematic Pair Clearances of Elastic Linkage Mechanisms

Authors: G. Cai, J. Gong, S. Peng, W. Wei

Journal: Journal of Physics: Conference Series

Year: 2023

Analytical Formula of Positive Position Solution of 2PPa-PSS 3-Translational Parallel Mechanism with Low Coupling-degree and its Numerical Application

Authors: J. Gong, W. Wei, S. Peng, K. Zhang

Journal: Jordan Journal of Mechanical & Industrial Engineering

Year: 2021

Prof Soon-Do Yoon | Performance Management | Best Researcher Award

Prof Soon-Do Yoon | Performance Management | Best Researcher Award

Chonnam National University/Department of Chemical and Biomolecular Engineering, South Korea

Profile 

Orcid 

🎓 Early Academic Pursuits

Dr. Soon-Do Yoon’s academic journey has been deeply rooted in Chonnam National University, where he has demonstrated a consistent and focused commitment to chemical engineering. He earned his Bachelor of Engineering (B.E.) in Applied Chemical Engineering in 2001. Driven by a desire to advance his expertise, he continued at the same institution for his Master of Science (M.S.) in Chemical Technology, awarded in 2003. Building on his earlier research and academic success, Dr. Yoon completed his Ph.D. in Applied Chemical Engineering in 2006, focusing on pioneering research within this multifaceted field. Each degree added layers of specialization, equipping him with the knowledge and technical acumen to navigate the challenges of advanced chemical engineering.

💼 Professional Endeavors

Dr. Yoon’s professional career began in earnest in 2006 as a postdoctoral researcher at Chonnam National University’s Center for Development of Fine Center. Here, he worked closely on various projects, laying the groundwork for his future pursuits in chemical and biomolecular engineering. In 2007, he transitioned to a dual role as a Senior Researcher and Lecturer at Chonnam National University’s Engineering Research Institute. These positions enabled him to establish a rigorous academic portfolio and research capabilities while imparting knowledge to future engineers.

From 2009 to 2010, Dr. Yoon expanded his research exposure internationally, conducting joint research at the University of Technology Sydney in Australia. This role allowed him to collaborate globally, exploring innovative approaches in engineering and broadening his perspectives in chemical systems. Upon his return to Chonnam National University, he continued to ascend the academic ranks, eventually earning a professorship in the Department of Chemical and Biomolecular Engineering. Dr. Yoon’s expertise gained further recognition in 2024 when he took up a visiting professor role at the University of Florida’s Emerging Pathogens Institute, where he collaborated on cross-disciplinary research integrating chemical engineering solutions with biological sciences.

🔬 Contributions and Research Focus

Dr. Yoon’s research has had a profound impact on areas such as biomedical polymers, water treatment, cosmetic development, and environmental sustainability. His projects reveal a dedication to applied research with practical outcomes that address real-world challenges. Notable projects under his leadership include:

  • Drug-Imprinted Natural Polymer Patches: Supported by the Korea Ministry of Education, Dr. Yoon’s research from 2019 to 2024 focused on developing functional biomedical patches for drug delivery. This project has opened avenues for personalized medical solutions that enhance patient care.
  • Cosmetic and Microneedle Patch Development: In collaboration with the Korea Technology and Information Promotion Agency for SMEs, Dr. Yoon explored the development of cosmetics that use Lactobacillus strains to improve skin health, aiming to create products that have both dermatological and economic value.
  • Water-Soluble Oil Removal in Wastewater: His 2021-2022 project with the Korea Industrial Complex Corporation revolved around creating systems to remove water-soluble oils from wastewater, underscoring his commitment to environmental conservation through engineering solutions.
  • Industrial Waste By-Product Utilization: Dr. Yoon’s efforts with Jeonnam Techopark have led to advanced manufacturing technologies using red mud, an industrial by-product. This project reflects his dedication to sustainable practices by recycling waste materials for practical applications, contributing to a circular economy.

His research portfolio also highlights significant work in biodegradable biomaterials that incorporate molecular recognition, funded by the Korea Ministry of Education. These materials have applications in the biomedical field, showcasing his commitment to integrating sustainability into cutting-edge technological advancements.

🏆 Accolades and Recognition

Dr. Yoon’s work has earned him numerous awards that underscore his dedication to excellence and service. His Best Service Award from Chonnam National University in 2023 highlights his commitment to academic and institutional contributions. In 2022, he received the Best Achievement Award from the Korean Society of Industrial and Engineering Chemistry, acknowledging his significant research breakthroughs and dedication to advancing the field. These accolades are testaments to his leadership and the value he brings to his university, students, and the broader engineering community.

🌍 Impact and Influence

Beyond his awards and research, Dr. Yoon’s influence is evident in his role as an educator and mentor. His courses in chemical and biomolecular engineering are instrumental in training the next generation of engineers. Through his professorship at Chonnam National University and his visiting roles internationally, Dr. Yoon has inspired countless students and researchers to pursue innovative paths in chemical engineering. His guidance on sustainable solutions and advanced biomaterials has imparted a lasting ethos in his students, encouraging them to prioritize environmentally responsible practices in their future careers.

📈 Legacy and Future Contributions

Dr. Yoon’s legacy is one of dedication, scientific curiosity, and a profound commitment to environmental and biomedical advancement. His work on biodegradable biomaterials, sustainable by-product utilization, and biomedical applications of chemical engineering reflects his vision of an engineering field that harmonizes human health with environmental preservation. His future projects, especially those in collaboration with international institutions like the University of Florida, promise to advance both scientific knowledge and practical solutions in the realms of environmental protection and healthcare.

As he continues his work, Dr. Yoon’s contributions will likely lead to even greater innovations, creating safer, more effective biomedical materials and sustainable industrial practices. His commitment to both academia and industry positions him as a trailblazer in chemical and biomolecular engineering, whose influence will extend far beyond the university and his immediate research network.

📝Notable Publications

Synthesis, recognition properties and drug release behavior of diltiazem‐imprinted chitosan‐based biomaterials

Authors: Kyeong‐Jung Kim, Ji‐Hoon Kang, Se‐woon Choe, Yeon‐Hum Yun, Soon‐Do Yoon

Journal: Journal of Applied Polymer Science

Year: 2024-09-18

Inulin/PVA biomaterials using thiamine as an alternative plasticizer

Authors: Hyun-Gi Youn, Jae-Young Je, Chang-Moon Lee, Soon-Do Yoon

Journal: Carbohydrate Polymers

Year: 2019-09

Sulindac imprinted mungbean starch/PVA biomaterial films as a transdermal drug delivery patch

Authors: Hye-Yeong Tak, Yeon-Hum Yun, Chang-Moon Lee, Soon-Do Yoon

Journal: Carbohydrate Polymers

Year: 2019-03

Physical properties of mungbean starch/PVA bionanocomposites added nano-ZnS particles and its photocatalytic activity

Authors: Yeon-Hum Yun, Eun-Sik Kim, Wang-Geun Shim, Soon-Do Yoon

Journal: Journal of Industrial and Engineering Chemistry

Year: 2018-12

Prof Dr. ALEX IBHADON | Transformational Leadership | Best Researcher Award

Prof Dr. ALEX IBHADON | Transformational Leadership | Best Researcher Award

University of Hull, United Kingdom, United Kingdom

🔗 Professional Profiles

🎓 Education

  • PhD Chemistry, 1989, University of Birmingham, United Kingdom
  • MSc Chemistry, 1985, Ahmadu Bello University, Nigeria
  • BSc (Hons) Industrial Chemistry, 1981, University of Benin, Nigeria

👨‍🏫 Employment

  • 2019 – Present: Professor/Reader, University of Hull, United Kingdom
  • 2002-2019: Associate Professor, University of Hull, United Kingdom
  • 1996-2002: Assistant Professor, University of Hull, United Kingdom
  • 1991-1995: Postdoctoral Research Fellow, University of Newcastle, United Kingdom

🌟 Professional Qualifications

  • Fellow & Chartered Chemist, Royal Society of Chemistry, CChem FRSC, 2002, UK
  • Fellow, UK Higher Education Academy (FHEA), 2014, UK
  • Senior Fellow, UH Higher Education Academy (SFHEA), 2017, UK

📚 Teaching and Research in the UK

  • Internationally recognized for teaching excellence and curriculum design
  • Extensive experience in chemistry education at undergraduate and postgraduate levels
  • Significant contributions to teaching innovation and student engagement

🔬 Research Track Record

  • Focus on novel catalytic materials for sustainable chemical synthesis and renewable energy
  • Secured over £10.1M in research grants from EU, EPSRC, Royal Society, and BEIS
  • Pioneering work in decarbonization strategies in the UK’s Humber region
  • Patented inventions and spin-outs contributing to commercialization of research

🌍 Industry Engagement and Consultancy

  • Collaboration with over 350 industries in the Humberside region
  • Leading projects on resin formulation, hydrogen generation, and energy storage solutions
  • Key partnerships with organizations like EDF Energy and VUBA Chemical Innovations

🏆 Honors and Awards

  • Recognized for leadership in higher education and scientific research
  • Active involvement in national and international conferences and committees

This biography encapsulates Professor Alex Ibhadon’s illustrious career in academia, research, and industry, highlighting his profound impact on chemistry education, sustainable technology development, and industrial collaboration.

📖Publication Top Noted

 Paper Tittle: Heterogeneous photocatalysis: recent advances and applications

  • Authors: Alex Omo Ibhadon, Paul Fitzpatrick
  • Journal: Catalysts
  • Year: 2013
  • Citations:1533

 Paper Tittle: A review of the existing and alternative methods for greener nitrogen fixation

  • Authors: Nikolay Cherkasov, AO Ibhadon, P Fitzpatrick
  • Source: Chemical Engineering and Processing: Process Intensification
  • Year: 2015
  • Citations: 474

 Paper Tittle: Low temperature plasma-catalytic NOx synthesis in a packed DBD reactor: Effect of support materials and supported active metal oxides

  • Authors: BS Patil, Nikolay Cherkasov, J Lang, AO Ibhadon, Volker Hessel, Q Wang
  • Source: Applied Catalysis B: Environmental
  • Year: 2016
  • Citations: 186

 Paper Tittle: Solar light driven photocatalytic degradation of levofloxacin using TiO 2/carbon-dot nanocomposites

  • Authors: Shelja Sharma, Ahmad Umar, Surinder Kumar Mehta, Alex O Ibhadon, Sushil Kumar Kansal
  • Source: New Journal of Chemistry
  • Year: 2018
  • Citations: 108

Paper Tittle: Visible-light driven photocatalytic degradation of brilliant green dye based on cobalt tungstate (CoWO4) nanoparticles

  • Authors: Pankaj Taneja, Shelja Sharma, Ahmad Umar, Surinder Kumar Mehta, Alex O Ibhadon, Sushil Kumar Kansal
  • Source: Materials Chemistry and Physics
  • Year: 2018
  • Citations: 101