Almara Rahimli | Nanotechnology | Best Researcher Award

Ms. Almara Rahimli | Nanotechnology | Best Researcher Award

Baku State University

Almara Rahimli, born on June 16, 1993, in Baku, Azerbaijan, is an accomplished researcher and educator specializing in nanomaterials and nanotechnology. She currently serves as a researcher at the Nano Research Center, Baku State University, and a physics lecturer at the university’s Department of Chemical Physics of Nanomaterials. Almara has worked in various academic and research roles, with experience at international institutions like JINR, Kumamoto University, and Sapienza University of Rome. She has contributed to numerous research projects and published multiple scientific papers in her field. Almara’s expertise and contributions span a wide range of areas in nanomaterials and nanotechnology. She is fluent in Azerbaijani, English, Turkish, and Russian, and participates in numerous international conferences and workshops.

Publication Profile

scopus

Scholar

🎓 Education 

Bachelor’s Degree in Physics – Baku State University (2014). MSc in Nanoparticle Physics – Baku State University (2016). MA in Teaching and Learning – ADA University (ongoing). Ph.D. in Physics & Nanostructures – Baku State University (ongoing). Internships: Joint Institute of Nuclear Research, Russia (2017), Kumamoto University, Japan (2017-2018). Specialized Training: Advanced Courses on Environmental Emergency, Erasmus+ Program (2019-2023).

💼 Experience 

Researcher – Nano Research Center, Baku State University (2017–present). Physics Lecturer – Department of Chemical Physics of Nanomaterials, Baku State University (2016–present). Physics Teacher – ADA School (2016–present). Internships & Research Visits: Joint Institute of Nuclear Research, Russia (2017); Kumamoto University, Japan (2017–2018). Research Focus: Nanomaterials, TiO2 Nanoparticles, and Polymer Coating on Nanoparticles. International Collaborations: Involved in research projects co-funded by Erasmus+ and other international bodies.

🏆 Awards & Honors 

Erasmus+ Scholarship – Mobility Program for Nanotechnology Research (2019). Research Excellence Award – Baku State University (2021). Best Paper Presentation Award – Nano Materials Conference (2022). International Research Fellowship – Joint Institute of Nuclear Research (JINR), Russia (2017). Honors for Contributions to Nanotechnology – Awarded by multiple academic and research bodies.

🔬 Research Focus 

Almara Rahimli specializes in nanomaterials, particularly the modification and application of TiO2 nanoparticles with carbon-like materials. Her research explores nanoparticle interactions, coatings on colloidal nanoparticles, and their environmental applications. Almara has contributed to studies on the polymer coating on SiO2 nanoparticles, enhancing their functional properties for diverse scientific applications. Additionally, her work in nanomaterials and nanostructures addresses crucial issues in sustainability, energy, and environmental remediation. She has authored several research papers and participated in international conferences on nanotechnology and physics.

Publication Top Notes

  • Influence of Polarization Processes on the Morphology and Photoluminescence Properties of PP/TiO₂ Polymer Nanocomposites
    • Year: 2017
    • Authors: M Ramazanov, F Hajiyeva, A Maharramov, U Hasanova, A Ahmadova, …
    • Citations: 10

 

  • The influence of titanium dioxide (TiO2) nanoparticles on the structure, optical and dielectric properties of polyvinyl chloride (PVC)
    • Year: 2020
    • Authors: MA Ramazanov, AM Rahimli, FV Hajiyeva
    • Citations: 8

 

  • The Study of the Morphology and Dielectric Properties of PVC + TiO2-Based Nanocomposites
    • Year: 2019
    • Authors: MA Ramazanov, AM Rahimli
    • Citations: 6

 

  • Emission‐Color Control in Polymer Films by Memorized Fluorescence Solvatochromism in a New Class of Totally Organic Fluorescent Nanogel Particles
    • Year: 2019
    • Authors: N Yamada, H Noguchi, Y Orimoto, Y Kuwahara, M Takafuji, S Pathan, …
    • Citations: 6

 

  • Influence of polarization charges on the photoluminescence properties of nanocomposites based on polyvinylidene fluoride and titanium dioxide nanoparticles
    • Year: 2017
    • Authors: MA Ramazanov, FV Hajiyeva, AM Maharramov, AM Rahimli
    • Citations: 4

 

  • Influence temperature time mode of crystallization on the structure and properties of nanocomposites based on polyvinylidene fluoride (PVDF) and zirconium oxide nanoparticles
    • Year: 2017
    • Authors: FV Hajiyeva, MA Ramazanov, AM Maharramov, UA Hasanova, …
    • Citations: 4

 

  • The Effect of the Temperature-Time Mode of Crystallization on the Photoluminescence and Dielectric Properties of PVC/TiO2 Nanocomposites
    • Year: 2020
    • Authors: MA Ramazanov, AM Rahimli
    • Citations: 3

 

  • Insights into dielectric and thermal properties of polystyrene-zinc oxide nanocomposites: A multifaceted characterization approach
    • Year: 2024
    • Authors: A Rahimli, A Huseynova, N Musayeva, R Alekperov, M Jafarov
    • Citations: 2

 

  • Comprehensive analysis OF ZnO-Doped polystyrene nanocomposites: Structural, optical and defect analysis
    • Year: 2024
    • Authors: R Almara, A Huseynova, N Musayeva
    • Citations: 2

 

  • The role of the polarization charges in the formation of photoluminescent properties of nanocomposites based on polyvinylidene fluoride and zirconia dioxide nanoparticles
    • Year: 2017
    • Authors: MA Ramazanov, FV Hajiyeva, AM Maharramov, UA Hasanova, …
    • Citations: 2

 

Yaser Bahari | Nanomaterials | Best Researcher Award

Assist. Prof. Dr. Yaser Bahari | Nanomaterials | Best Researcher Award

Dr at University of Guilan,  Iran

Yaser Bahari is an Associate Professor at the University of Guilan, specializing in Nanotechnology. He completed his Bachelor’s and MSc in Materials Engineering at Sharif University of Technology, Iran (2001-2007), and earned his Ph.D. in Nanotechnology from the same university in 2013. He has conducted research at ICES Institute in Singapore and has been a faculty member in the Nanotechnology department at University of Guilan since 2015. His primary research interest lies in the physical properties of nanomaterials, focusing on sustainable energy conversion and storage.

Profile

Scopus

Orcid

Scholar

Education 🎓

Yaser Bahari earned his Bachelor’s (2001-2005) and MSc (2005-2007) degrees in Materials Engineering from Sharif University of Technology, Iran. He pursued a Ph.D. in Nanotechnology at the same university, graduating in 2013. During his academic career, he participated in a sabbatical study at ICES Institute in Singapore in 2012. His educational journey equipped him with extensive knowledge in materials science and nanotechnology, contributing to his later career as an academic and researcher in the field.

 Experience 💼

Yaser Bahari has extensive academic experience, having joined the University of Guilan’s Nanotechnology department in 2015. As an Associate Professor, his focus is on nanomaterial research for sustainable energy applications. Prior to his role at Guilan, Bahari worked at ICES Institute, Singapore, for sabbatical research in 2012. His teaching and research have advanced the understanding of nanomaterials, with projects focusing on energy storage, conversion, and nanomaterial properties. His contributions are recognized in the academic community, particularly in sustainable energy applications.

Awards and Honors 🏆

Yaser Bahari has earned several accolades throughout his career. His young scientist achievements are reflected in his successful supervision of multiple M.Sc. theses in nanotechnology. Notably, he has received the Early Career Research Award and has secured research funding for various projects on nanomaterials. His work in the field of nanotechnology and sustainable energy has garnered attention both in academia and industry, contributing to the advancement of energy solutions and material innovations.

Research Focus 🔍

Yaser Bahari’s research is centered on the physical properties of nanomaterials, particularly their applications in sustainable energy systems. His ongoing projects include the synthesis of advanced electrode materials for supercapacitors, electrocatalytic coatings for water electrolysis, and the development of semiconducting nanoparticles for photocatalytic applications. Bahari is also investigating the mechanical and thermal properties of two-dimensional nanomaterials and their applications in energy storage devices, such as Li-ion batteries, focusing on enhancing performance through quantum simulations and molecular dynamics studies.

Conclusion 📝

Dr. Yaser Bahari’s dedication to advancing nanotechnology, particularly in sustainable energy applications, positions him as a top contender for the Best Researcher Award. His impressive research projects and innovative approaches contribute significantly to both academic knowledge and real-world solutions. With continued interdisciplinary collaboration, his work has the potential to make even greater societal and environmental impacts.

Publications 📚

  • Title: NiCoP nanoarchitectures: One-step controlled electrodeposition and their application as efficient electrocatalysts for boosting hydrogen evolution reaction
    Authors: Mohammadi, O., Bahari, Y., Ahmadi Daryakenari, A., … Tian, Z.Q., Shen, P.K.
    Journal: International Journal of Hydrogen Energy, 2022, 47(82), pp. 34943–34954
    Citations: 21

 

  • Title: Elucidation of thermo-mechanical properties of silicon nanowires from a molecular dynamics perspective
    Authors: Hasheminia, F., Bahari, Y., Rajabpour, A., Arabha, S.
    Journal: Computational Materials Science, 2021, 200, 110821
    Citations: 15

 

  • Title: Preclinical assessment of chitosan–polyvinyl alcohol–graphene oxide nanocomposite scaffolds as a wound dressing
    Authors: Montazeri, A., Saeedi, F., Bahari, Y., Ahmadi Daryakenari, A.
    Journal: Polymers and Polymer Composites, 2021, 29(9_suppl), pp. S926–S936
    Citations: 11

 

  • Title: A study on the viscoelastic behavior of chitosan-polyvinyl alcohol-graphene oxide nanocomposite films as a wound dressing
    Authors: Saeedi, F., Montazeri, A., Bahari, Y., Pishvaei, M., Jannat, B.
    Journal: Polymers and Polymer Composites, 2021, 29(8), pp. 1259–1272
    Citations: 11

 

  • Title: Application of two-dimensional materials as anodes for rechargeable metal-ion batteries: A comprehensive perspective from density functional theory simulations
    Authors: Bahari, Y., Mortazavi, B., Rajabpour, A., Zhuang, X., Rabczuk, T.
    Journal: Energy Storage Materials, 2021, 35, pp. 203–282
    Citations: 103

 

  • Title: In situ molecular-level synthesis of N, S co-doped carbon as efficient metal-free oxygen redox electrocatalysts for rechargeable Zn–Air batteries
    Authors: Lyu, D., Yao, S., Bahari, Y., … Tian, Z.Q., Shen, P.K.
    Journal: Applied Materials Today, 2020, 20, 100737
    Citations: Not provided

 

  • Title: Preclinical assessment of chitosan–polyvinyl alcohol–graphene oxide nanocomposite scaffolds as a wound dressing
    Authors: A. Montazeri, F. Saeedi, Y. Bahari, A. Ahmadi Daryakenari
    Journal: Polymers and Polymer Composites, 2021, 29(9_suppl), S926-S936
    Citations: 12

 

  • Title: Preparation and ethanol sensing properties of ZnO nanoparticles via a novel sol‐gel method
    Authors: A. Ahmadi Daryakenari, M. Ahmadi Daryakenari, Y. Bahari, H. Omivar
    Journal: International Scholarly Research Notices, 2012, 2012, 879480
    Citations: 11

 

  • Title: Synthesis and characterization of chitosan-polyvinyl alcohol-graphene oxide nanocomposites
    Authors: F. Saeedi, A. Montazeri, Y. Bahari, M. Pishvaee, M. Ranjbar
    Journal: International Journal of Chemoinformatics and Chemical Engineering (IJCCE), 2018, 7
    Citations: 9

 

  • Title: Optimization of interfacial mixing for thermal transport along Si/Ge heterostructures: A molecular dynamics study
    Authors: R.K. Kelayeh, A. Rajabpour, E. Taheran, Y. Bahari
    Journal: Applied Surface Science, 2023, 626, 157236
    Citations: 8

 

  • Title: Fabrication and characterization of chitosan-polyvinyl alcohol-graphene oxide nanocomposite scaffold for wound healing purposes
    Authors: F. Saeedi, A. Montazeri, Y. Bahari, M. Pishvaei, B. Jannat, M. Rasa, F. Saeedi
    Journal: Human, Health and Halal Metrics, 2021, 1(2), 47-55
    Citations: 4

 

  • Title: Application of 3D gold nanotube ensembles in electrochemical sensing of ultra-trace Hg (II) in drinkable water
    Authors: Y.B. Mollamahale, M. Ghorbani, A. Dolati, M. Ghalkhani
    Journal: Surfaces and Interfaces, 2018, 10, 27-31
    Citations: 4

 

  • Title: Fabrication of NIO nanoparticles and chip-like nanoflakes by solvothermal technique
    Authors: Y.B.M. Mahaleh, S.K.E. Sadrnezhad, D. Hosseini
    Patent: US Patent 8,110,173, 2012
    Citations: 3

 

 

Chong Qiu | Nanomedicine | Young Scientist Award

Assoc Prof Dr. Chong Qiu | Artificial Intelligence | Young Scientist Award

Associate Professor at China Academy of Chinese Medical Sciences, China

Dr. Chong Qiu is an Associate Professor at the Artemisinin Research Center and Institute of Chinese Materia Medica, China Academy of Chinese Medical Sciences. He earned his PhD from Peking University, specializing in nanocarriers for drug delivery, siRNA, and peptide therapeutics. Dr. Qiu’s research focuses on innovative nanoparticle-based drug delivery systems, with applications in cancer treatment, pulmonary fibrosis, and targeted gene therapies. His work is widely recognized, with numerous high-impact publications in prestigious journals like Nature Communications and Journal of Nanobiotechnology. He is also a board member of several scientific journals and a leading expert in his field.

Publication profile

Education:

  • PhD in Pharmaceutical Science, Peking University, 2019
  • Bachelor’s degree, Peking University, 2014

Research Interests:

  • Nanocarriers for siRNA delivery
  • Nano-carriers for oral protein and peptide
  • Targeted nanoparticulate drug delivery

Professional Roles:

  • Young Scientist Board Member for Asian Journal of Pharmaceutical Sciences, iMeta, and Traditional Medicine Research and Exploration

Publication

  1. Photoaffinity probe-based antimalarial target identification of artemisinin in the intraerythrocytic developmental cycle of Plasmodium falciparum
    Journal: iMeta
    Year: 2024
    DOI: 10.1002/IMT2.176
    Contributors: Gao, Peng; Wang, Jianyou; Qiu, Chong; Zhang, Huimin; Wang, Chen; Zhang, Ying; Sun, Peng; Chen, Honglin; Wong, Yin Kwan; Chen, Jiayun et al.

 

  1. Enhanced tumor penetration across the blood-brain barrier: endoplasmic reticulum membrane hybrid siRNA nanoplexes
    Journal: Materials Today Nano
    Year: 2024
    DOI: 10.1016/j.mtnano.2023.100442
    Contributors: Chong Qiu; Shun Tao Liang; Qing Chao Tu; Chen Pan; Jia Yin Han; Bo Wu; Qiu Yan Guo; Yu Qian Lu; Jun Zhe Zhang; Yu Qing Meng et al.

 

  1. Advanced Strategies for Overcoming Endosomal/Lysosomal Barrier in Nanodrug Delivery
    Journal: Research
    Year: 2023
    DOI: 10.34133/RESEARCH.0148
    Contributors: Qiu, Chong; Xia, Fei; Zhang, Junzhe; Shi, Qiaoli; Meng, Yuqing; Wang, Chen; Pang, Huanhuan; Gu, Liwei; Xu, Chengchao; Guo, Qiuyan et al.

 

  1. Advanced strategies for nucleic acids and small-molecular drugs in combined anticancer therapy
    Journal: International Journal of Biological Sciences
    Year: 2023
    DOI: 10.7150/ijbs.79328
    Contributors: Chong Qiu; Yanyan Wu; Qiaoli Shi; Qiuyan Guo; Junzhe Zhang; Yuqing Meng; Chen Wang; Fei Xia; Jigang Wang; Chengchao Xu

 

  1. Anemoside B4 alleviates neuropathic pain through inhibiting inflammation
    Source: ResearchSquare
    Year: 2022
    DOI: 10.21203/rs.3.rs-1821028
    Contributors: Zhao, M.; Li, H.; Yang, T.; Qiu, C.; Lu, T.; Wang, Q.; Guo, Q.; Wang, J.

 

  1. Preparation and application of calcium phosphate nanocarriers in drug delivery
    Journal: Materials Today Bio
    Year: 2022
    DOI: 10.1016/j.mtbio.2022.100501
    Contributors: Chong Qiu; Yanyan Wu; Qiuyan Guo; Qiaoli Shi; Junzhe Zhang; Yuqing Meng; Fei Xia; Jigang Wang

 

🏆 Conclusion

Dr. Chong Qiu is highly suitable for a Young Scientist Award. His innovative research, strong publication record, and leadership roles in the field of nanotechnology-based drug delivery make him a compelling candidate. With some strategic improvements in expanding research impact and fostering international collaborations, he has the potential to significantly advance the scientific community’s understanding of targeted therapeutics.