Mr. Dongling Liu | Microscale Awards | Best Researcher Award

Mr. Dongling Liu | Microscale Awards | Best Researcher Award

Mr. Dongling Liu, South China University of Technology, China

Mr. Liu is a dedicated researcher in Energy and Power Engineering, having earned comprehensive scholarships during his studies at Shenyang University of Chemical Technology. He completed his master’s degree in Mechanical and Power Engineering, specializing in phase change heat transfer, with a focus on explosion boiling heat transfer and surface wettability. His innovative research employs molecular dynamics simulation to explore microphysical processes, significantly contributing to the development of advanced cooling technologies for electronic components. Mr. Liu’s practical expertise is underscored by his involvement in a utility model patent for a multi-ring closed pulse heat pipe, reflecting his commitment to addressing real-world engineering challenges and industry needs in effective heat dissipation solutions.

Professional Profile:

Scopus

Suitability for the Award:

Mr. Dongling Liu exemplifies the qualities of a leading researcher through his robust educational foundation, innovative research in phase change heat transfer, and significant contributions to the academic community. His proactive approach to tackling relevant engineering challenges makes him a standout candidate for the Best Researcher Award.

Solid Educational Background:

Mr. Liu began his academic journey in Energy and Power Engineering at Shenyang University of Chemical Technology, where he consistently earned comprehensive scholarships, highlighting his dedication and excellence.

He pursued a master’s degree in Mechanical and Power Engineering, focusing on phase change heat transfer, demonstrating his commitment to advancing knowledge in this critical area.

Research Expertise in Phase Change Heat Transfer:

His specialization in explosion boiling heat transfer and surface wettability showcases his deep understanding of complex thermal phenomena. This area is increasingly important due to its implications for improving cooling technologies, particularly in electronic components.

Mr. Liu’s research on how nanostructures influence phase transition heat emphasizes his innovative approach to solving real-world engineering challenges.

Innovative Research Projects:

His studies utilize molecular dynamics simulation, a powerful tool for investigating microphysical processes, which aligns with current trends in engineering and technology.

He has also contributed to practical applications, evidenced by his involvement in a utility model patent for a multi-ring closed pulse heat pipe, demonstrating his ability to translate research into tangible solutions.

Focus on Real-World Applications:

Mr. Liu’s work addresses the urgent need for effective cooling solutions in electronic components, highlighting the relevance of his research in today’s technology-driven environment. His insights into heat dissipation challenges reflect a strong awareness of industry needs.

Publication Top Notes:

  • Title: Effect of Wetting Surface on Heat Transfer Characteristics of Double Bubbles at Microscale
    • Year: 2024
  • Title: Molecular Dynamics Study of Explosive Boiling on Hybrid Wettability Concave and Convex Surfaces
    • Year: 2023
  • Title: Molecular Dynamics Simulation of Thermophysical Properties of Nanofluids
    • Year: 2023

 

Dr. Payal Gupta | Novel Protocols | Best Researcher Award

Dr. Payal Gupta : Novel Protocols

Dr. Payal Gupta, Graphic Era University, India

πŸ”¬ Dr. Payal Gupta is a dynamic and motivated researcher with a wealth of expertise in Molecular Microbiology, Omics (metabolomics, transcriptomics, proteomics), Nanomedicine, and Microbiome studies. With a robust five-year post-doctoral research background at IIT-Roorkee, Uttarakhand, Dr. Gupta exhibits a strong passion for unraveling the intricacies of disease pathogenesis, particularly focusing on therapeutic targets within biofilm architecture.

Proficient in a diverse array of scientific techniques, from confocal microscopy to gene deletion by homologous recombination, Dr. Gupta brings a comprehensive skill set to her research endeavors. A collaborative spirit and a track record of conducting experiments across varied research domains further underscore her proficiency. Always ready for new challenges, Dr. Gupta is available to join immediately and expressively open to global relocation, demonstrating a commitment to expanding her scientific knowledge on a global scale. πŸŒπŸ§«πŸ”

πŸŽ“ Education :Β 

πŸ‘©β€πŸŽ“ Dr. Payal Gupta is a distinguished scholar with an impressive educational background. In 2016, she earned her Ph.D. in Biotechnology from the Department of Biotechnology at Graphic Era University, Dehradun, India. Driven by a commitment to interdisciplinary knowledge, she recently completed a Post-graduate Diploma in Biotechnology, Law, and Policy (PGDBLP) in 2023 from Gujarat National Law University, India. πŸŽ“πŸ’Ό This unique combination of biotechnology and legal insights reflects her comprehensive approach to scientific research and positions her as a versatile professional ready to navigate the intersection of science and policy. πŸŒπŸ§¬πŸ“š

🌐 Professional Profiles : 

Scopus

Google Scholar

ORCID

LinkedIn

πŸ† Awards :

✨ Dr. Payal Gupta stands as a distinguished recipient of multiple accolades, highlighting her exemplary contributions to the field of bioengineering and biomedical research. In February 2022, she was honored with the Young Scientist Award for delivering the best oral presentation at the 5th International Conference hosted by MIT School of Bioengineering Sciences and Research, Pune. This recognition underscored her prowess in communicating cutting-edge research findings. 🎀

Further embellishing her accolades, Dr. Gupta received another Young Scientist Award in December 2020 at the 3rd National Symposium organized by the Translational Biomedical Research Society, Lucknow. Her compelling oral presentation once again showcased her expertise and innovation in the realm of translational research. πŸŒπŸ‘©β€πŸ”¬

🧠 Research Interests πŸ”¬πŸŒ :

πŸ”¬ Dr. Payal Gupta’s intellectual pursuits delve into the intricate realms of fungal biology and host-pathogen dynamics, encapsulating a profound passion for understanding the molecular intricacies of microbial existence. Her research interests span the multifaceted domains of fungal virulence, pathogenesis, and host-pathogen interactions, reflecting a dedicated exploration of the delicate dance between invading pathogens and their host counterparts. πŸ’‘πŸ„ This scientific journey is not merely theoretical; Dr. Gupta’s focus extends to practical applications, emphasizing drug development as a means to combat fungal threats. πŸŒβš™οΈ Her inquisitive mind seeks to unravel the mysteries that govern these biological interactions, paving the way for innovative solutions in the realm of antifungal therapeutics. 🧠✨ Driven by an insatiable curiosity, she aspires to contribute significantly to the ever-evolving landscape of medical mycology. πŸŒ±πŸ‘©β€πŸ”¬

πŸ“šΒ Publication Impact and Citations :Β 

Scopus Metrics:

  • πŸ“Β Publications: 36 documents indexed in Scopus.
  • πŸ“ŠΒ Citations: A total of 366 citations for his publications, reflecting the widespread impact and recognition of Dr. Payal Gupta’s research within the academic community.

Google Scholar Metrics:

  • All Time:
    • Citations: 464 πŸ“–
    • h-index: 14 πŸ“Š
    • i10-index: 16 πŸ”
  • Since 2018:
    • Citations: 444 πŸ“–
    • h-index: 13 πŸ“Š
    • i10-index: 15 πŸ”

πŸ‘¨β€πŸ« A prolific researcher with significant impact and contributions in the field, as evidenced by citation metrics. πŸŒπŸ”¬

Publications ( Top Note ) :

1.Β  Microwave assisted ΞΊ-carrageenan capped silver nanocomposites for eradication of bacterial biofilms

Published in: Carbohydrate Polymers (2019), Cited by: 47

2.Β  Effectiveness of Phytoactive Molecules on Transcriptional Expression, Biofilm Matrix, and Cell Wall Components of Candida glabrata and Its Clinical Isolates

Published in: ACS Omega (2018), Cited by: 41

3.Β  Cinnamaldehyde incorporated gellan/PVA electrospun nanofibers for eradicating Candida biofilm

Published in: Materials Science and Engineering: C (2020), Cited by: 38

4.Β  Chemistry and Biology of Farnesol and its Derivatives: Quorum Sensing Molecules with Immense Therapeutic Potential

Published in: Current Topics in Medicinal Chemistry (2018), Cited by: 28

5.Β  Microalgae: An emerging source for mitigation of heavy metals and their potential implications for biodiesel production

Published in: Advanced Biofuels (2019), Cited by: 25

6.Β  Antihypertensive, Amlodipine Besilate Inhibits Growth and Biofilm of Human Fungal Pathogen Candida

Published in: ASSAY and Drug Development Technologies (2016), Cited by: 24

7.Β  Mechanistic insights into Candida biofilm eradication potential of eucalyptol

Published in: Journal of Applied Microbiology (2021), Cited by: 22

8.Β  Eucalyptol/Ξ²-cyclodextrin inclusion complex loaded gellan/PVA nanofibers as antifungal drug delivery system

Published in: International Journal of Pharmaceutics (2021), Cited by: 20

9.Β  Lingzhi or Reishi Medicinal Mushroom, Ganoderma lucidum (Agaricomycetes), Inhibits Candida Biofilms: A Metabolomic Approach

Published in: International Journal of Medicinal Mushrooms (2017), Cited by: 20

10.Β  Dissecting the anti-biofilm potency of kappa-carrageenan capped silver nanoparticles against Candida species

Published in: International Journal of Biological Macromolecules (2021), Cited by: 19