Tong Li | Nanotechnology | Best Researcher Award

Tong Li | Nanotechnology | Best Researcher Award

Dr Tong Li, Chongqing University of Technology, China

Dr. Tong Li 🌟 is a researcher specializing in terahertz metamaterials, micro-nano manufacturing, and photoelectric detection. πŸŽ“ He earned his bachelor’s degree from Chongqing University (2013-2017), master’s from Northwest Agriculture and Forestry University (2017-2019), and doctorate from Harbin Institute of Technology (2019-2023). πŸ“š Currently, he works at Chongqing University of Technology. His groundbreaking studies include broadband terahertz absorbers, multiband amplitude modulators, and high-Q bandstop filters. πŸ›°οΈ Notable publications in journals like ACS Applied Electronic Materials and Advanced Materials Interfaces highlight his expertise in terahertz technologies. πŸš€ Dr. Tong Li continues to innovate in advancing optical and quantum electronics. πŸ’‘πŸ“–

Publication Profile

Orcid

Education

Dr. Tong Li πŸŽ“ began their academic journey at Chongqing University (2013-2017), earning a bachelor’s degree 🏫. They advanced to pursue a master’s degree πŸ“š at Northwest Agriculture and Forestry University (2017-2019), focusing on deepening their expertise. From 2019 to 2023, Dr. Li completed a doctorate πŸŽ“βœ¨ at the prestigious Harbin Institute of Technology, showcasing exceptional dedication to research and innovation. Currently, they are contributing their knowledge and skills as a faculty member πŸ§‘β€πŸ« at Chongqing University of Technology (since December 2024), where they continue to inspire and shape future generations. 🌟

Research field

Dr. Tong Li is a leading researcher specializing in terahertz metamaterials, micro-nano manufacturing, and photoelectric detection. πŸ“‘πŸ”¬βœ¨ With a focus on cutting-edge technologies, Dr. Li’s work bridges the gap between advanced materials and innovative applications in the fields of electronics and optics. Their expertise in designing and fabricating micro-nano structures has contributed significantly to advancements in terahertz technologies, enhancing detection and imaging systems. πŸ”βš‘ As a dedicated academic and scientist, Dr. Li continues to push the boundaries of photonics and nanotechnology, fostering innovation and shaping the future of high-frequency material science. πŸš€πŸ“š

Current Position and Work

Dr. Tong Li serves at Chongqing University of Technology, where he contributes significantly to academia and industry applications. With a strong focus on innovation and research, Dr. Li is actively engaged in groundbreaking projects aimed at advancing technological and academic progress. His dedication reflects a commitment to bridging the gap between theoretical knowledge and practical solutions, fostering impactful collaborations. Through his ongoing efforts, Dr. Li strives to inspire the next generation of scholars while contributing to transformative advancements in his field. πŸŒŸπŸ“šπŸ”¬βœ¨πŸ’‘

Research Focus

Dr. Tong Li’s research focuses on terahertz photonics and optical engineering, specifically designing innovative structures for advanced applications. πŸ“‘πŸ”¬ His work includes microtopography-guided 3D spiral and double-layer cross structures, enabling narrowband terahertz filters and multiband amplitude modulators, vital for communication and sensing technologies. πŸ“Άβœ¨ Additionally, he has explored AI-driven methods for tracking animal behavior, such as monitoring cows’ ruminant activity using optical flow and inter-frame difference techniques, contributing to precision agriculture. πŸ„πŸ“ˆ His interdisciplinary expertise bridges cutting-edge photonics and practical applications, advancing technologies in both engineering and agricultural monitoring. πŸš€πŸŒ±

Publication Top Notes

Microtopography-guided 3D spiral structure for narrowband terahertz filter working in a wide frequency range

Masoud Besati | Nanotechnology | Excellence in Innovation Award

Masoud Besati | Nanotechnology | Excellence in Innovation Award

Mr Masoud Besati, Shahid Beheshti University of Tehran, Iran

Masoud Besati is a PhD candidate in Medicinal Chemistry at Shahid Beheshti University, Tehran, Iran (2019-2024) πŸŽ“, specializing in plant virus genomics, CRISPR, and gene ontology πŸŒΏπŸ”¬. He earned his MSc in Phytochemistry from the University of Kashan (2014-2016) with a focus on natural compound analysis πŸ§ͺ. With extensive research and development experience at NanoAlvand Pharmaceutical Company and Rabee Company 🏒, he excels in formulation, quality control, and essential oil extraction. Skilled in advanced techniques like HPLC, GC-MS, and bioinformatics tools 🧬, he has published on antiviral nanoemulsions and anthelmintic activities πŸ“š.

Publication profile

google scholar

Education

πŸ”¬ From 2023 to 2024, worked as a researcher intern in Biotechnology at CSIC-University of Valencia, focusing on genomics, CRISPR, and gene ontology of plant viruses. 🌱 Pursuing a Ph.D. in Medicinal Chemistry at Shahid Beheshti University, Tehran, Iran (2019-2024), with a GPA of 18.05 and a major GPA of 20 (3.61/4), ranked 1st in graduation class. Thesis: “The effects of new formulations such as nanoemulsions, liposomes, and niosomes on plant viruses.” 🌿 Earned an M.Sc. in Phytochemistry from the University of Kashan (2014-2016), with a GPA of 17.86. πŸŽ“ Completed a B.Sc. in Chemistry from Ilam University (2009-2014).

Experience

From 2020 to 2022, He served as a Research and Development Expert at Nanoalvand Pharmaceutical Company (Cinnagen Biotech Corporation) in Tehran, Iran. My responsibilities included formulating generic parenteral medicines, method development, risk assessment, and validation of stability packages πŸ“ŠπŸ’‰. Prior to this, from 2017 to 2019, He was the Quality Control Manager at Rabee Company (Iran Golab Group) in Kashan, Iran, managing the QC laboratory and designing new products πŸ§ͺπŸ”¬. In 2017, I operated industrial essential oil extraction devices at Rabee Company and designed the industrial column extraction of Phenyl Ethyl Alcohol 🏭🌿. In 2016, He supervised the laboratory at the University of Kashan, teaching junior students and conducting essential oil quality control tests πŸ“šπŸ”.

Research focus

Masoud Besati’s research primarily focuses on the extraction and analysis of bioactive compounds from medicinal plants. His work includes studying the anthelmintic, antioxidant, and antimicrobial properties of plant extracts, as well as optimizing extraction methods using techniques like response surface methodology. Besati has extensively investigated the chemical composition and biological activities of essential oils from various plant species, including Astrodaucus orientalis and Rosa damascena. His studies also extend to the toxicity assessments of plant extracts and their potential therapeutic applications. 🌿πŸ§ͺπŸ”¬

Publication top notes

In vitro anthelmintic activity of ethanol and aqueous extracts of Terminalia macroptera and Bridelia micrantha against Heligmosomoides polygyrus, Caenorhabditis elegans and in …

In Vitro Anthelmintic Activities of Khaya anthotheca and Faidherbia albida Extracts Used in Chad by Traditional Healers for the Treatment of Helminthiasis and In Silico Study …

Anthelmintic Activity of Ethanolic and Aqueous Extracts ofKhaya grandifoliola Stem Bark against Heligmosomoides polygyrus: In Vitro and In Silico Approaches

Evaluation acute and sub-chronic toxicity assessments of Oleo-gum Resin of Ferula assa-foetida L. in Wistar rats

The optimization of Fenugreek seeds (Trigonella foenum-graecum L.) extraction by response surface methodology based on Ξ²-Sitosterol

Essential Oil Analysis, Antioxidant and Antimicrobial Activity Evaluation of Astrodaucus orientalis (L.) Drude Grown in Iran

The study of essential oils yield variation in Rosa damascena Mill. from different regions of Iran

EXTRACTION AND ANALYSIS OF EFFECTIVE CONSTITUENTS FROM DIFFERENT PARTS OF Astrodaucus orientalis (L.) Drude EXTRACT FROM KASHAN

EXTRACTION AND ANALYSIS OF EFFECTIVE CONSTITUENTS FROM DIFFERENT PARTS OF Nectaroscordum tripedale (Trautv.) Grossh. EXTRACT FROM CENTRAL ZAGROS

EXTRACTION AND ANALYSIS OF PHYTOCANNABINOIDS AND OTHER CANNABIS CONSTITUENTS FROM LEAVES OF WHITE WIDOW β€œMARIJUANA” (Cannabis sativa Γ— indica)