Chander A Pawar | Chemical Engineering | Best Researcher Award

Best Researcher Award

Chander A Pawar
VNR Vignana Jyothi Institute of Engineering and Technology, India

Chander A Pawar
Affiliation VNR Vignana Jyothi Institute of Engineering and Technology
Country India
Google Scholar Profile en&oi=ao
Documents 32
Citations 434
h-index 12
Subject Area Chemical Engineering
Event International Soil Scientist Awards

Chander A Pawar is a researcher affiliated with VNR Vignana Jyothi Institute of Engineering and Technology, India, whose documented scholarly profile includes 32 research documents, 434 citations, and an h-index of 12. The publication record supplied for this recognition profile demonstrates research activity spanning polymeric materials, functionalized nanoparticles, nanomedicine, controlled drug delivery, and related chemical-engineering applications. [1]

Abstract

The Best Researcher Award profile recognizes the scholarly record of Chander A Pawar in the context of Chemical Engineering and interdisciplinary materials research. Available publication information indicates contributions to polymer properties, surface-modified nanoparticles, polymeric vectors, nanoporous capsules, micellar systems, and nanomedicine. The reported bibliometric indicators of 434 citations across 32 documents and an h-index of 12 provide quantitative evidence of research visibility. [2]

Keywords

Chemical Engineering; Polymer Science; Nanoparticles; Nanomedicine; Drug Delivery; Functional Materials; Surface Modification; Polymeric Vectors; Nanotechnology; Controlled Release.

Introduction

Chemical engineering increasingly intersects with materials science and biomedical applications through the design of functional polymers, nanoscale carriers, and engineered surfaces. Pawar’s supplied publication record reflects this interdisciplinary direction, particularly through studies involving polymeric structures and nanoscale delivery systems. Such research connects chemical-engineering principles with material functionality and biomedical utility. [3]

Research Profile

The research profile is characterized by an emphasis on functional polymeric and nanostructured systems. Reported publications include work on functionalization and surface modification of nanoparticles, block-copolymer micelles, nanoporous capsules, and polymeric vectors for controlled therapeutic delivery. These themes demonstrate a research orientation toward materials design, nanoscale engineering, and application-focused chemical research. [4]

Research Contributions

  • Research involving functionalization and surface-modified nanoparticles for advanced material applications.
  • Investigation of block-copolymer architectures and nanoporous capsules for controlled release systems.
  • Development and evaluation of polymeric vectors associated with nanomedicine and targeted therapeutic delivery.
  • Interdisciplinary research linking chemical engineering, nanotechnology, materials science, and biomedical engineering.

Publications

Selected works supplied for this profile include Polymer properties: Functionalization and surface modified nanoparticles (2019), Role of Novel Drug Delivery Vehicles in Nanobiomedicine (2020), Metal (Au)-Decorated Chitosan-l-Arginine Polymeric Vector for Codelivery of Gefitinib and miR125b for Lung Cancer Therapy (2022), Nanoporous capsules of block co-polymers of (MeO-PEG-NH)-b-(L-GluA)-PCL for the controlled release of anticancer drugs for therapeutic applications (2016), and Self-assembled block copolymer (BenzA)-b-(PCL) micelles to orient randomly distributed AuNPs into hollow core-shell morphology and its role as payload for nanomedicines (2018). [5]

Research Impact

The supplied citation record reports 434 citations associated with 32 documents and an h-index of 12. These indicators suggest that the researcher’s publications have achieved measurable scholarly visibility. Citation counts should be interpreted as bibliometric indicators rather than standalone measures of research quality, while the publication themes provide additional context for evaluating the researcher’s scientific contribution. [1]

Award Suitability

Based on the supplied academic metrics and publication record, Chander A Pawar presents a profile relevant to consideration for the Best Researcher Award. The combination of documented publications, citation activity, and interdisciplinary research themes provides a substantive basis for scholarly recognition. Final award decisions should additionally consider independently verified affiliations, authorship, publication quality, research originality, and the criteria established by the awarding organization.

Conclusion

Chander A Pawar’s supplied research record reflects sustained engagement with chemical engineering, polymeric materials, nanotechnology, and nanomedicine. With 32 documents, 434 citations, and an h-index of 12, the profile demonstrates established scholarly visibility. The documented research themes provide a coherent basis for consideration within an academic recognition framework focused on research contribution and impact.

References

  1. Google Scholar. (n.d.). Chander A Pawar — scholarly publications and citation record.
    https://scholar.google.co.uk/citations?hl=en&user=Kkt5qrgAAAAJ&view_op=list_works&sortby=title
  2. Google Scholar. (n.d.). Research profile and citation indicators.
    https://scholar.google.co.uk/citations?hl=en&user=Kkt5qrgAAAAJ
  3. Amgoth, C., et al. (2019). Polymer properties: Functionalization and surface modified nanoparticles. Scholarly publication record.
    Google Scholar record
  4. Amgoth, C., Dharmapuri, G., Kalle, A. M., & Paik, P. (2016). Nanoporous capsules of block co-polymers for the controlled release of anticancer drugs for therapeutic applications. Nanotechnology, 27(12), 125101.
    https://doi.org/10.1088/0957-4484/27/12/125101
  5. Amgoth, C., et al. (2018). Self-assembled block copolymer micelles to orient randomly distributed AuNPs into hollow core-shell morphology and its role as payload for nanomedicines. Materials Science and Engineering: C, 92, 790–799.
    Google Scholar record
  6. Amgoth, C., et al. (2022). Metal (Au)-Decorated Chitosan-l-Arginine Polymeric Vector for Codelivery of Gefitinib and miR125b for Lung Cancer Therapy. ACS Applied Polymer Materials, 4(3), 1675–1687.
    Google Scholar record

Mahdokht arshadi | Chemical | Best Researcher Award

Dr. Mahdokht Arshadi | Chemical | Best Researcher Award

 Dr. Mahdokht Arshadi, Amirkabir University,  Iran

Dr. Mahdokht Arshadi is a researcher at Amirkabir University, Iran, with expertise in chemical engineering and a focus on sustainable bioleaching methods for extracting valuable metals from electronic waste.

Profile

Google Scholar

Summary:

Dr. Mahdokht Arshadi stands out as a pioneering researcher in chemical engineering, with her innovative focus on sustainable bioleaching methods for electronic waste. Her work addresses a critical global challenge, aligning with environmental and industrial priorities. She demonstrates the technical depth, creativity, and societal relevance required for recognition as an outstanding researcher.

 

🎓 Education

Mahdokht Arshadi holds a Ph.D. in Chemical Engineering from Sharif University of Technology, Tehran, Iran, where she has been studying since 2015. She earned her M.Sc. in Chemical Engineering (2013–2015) from Tarbiat Modares University and completed her B.Sc. in the same field (2009–2013) at Sharif University of Technology.

 

💼Experience

Her research focuses on the bioleaching of e-waste, encompassing projects from her B.Sc. to her Ph.D. studies. These include innovative approaches to recovering metals like nickel, copper, and gold from electronic waste.

🔬Research Focus

Her work primarily explores sustainable bioleaching methods for extracting valuable metals from electronic waste. Through collaborations and independent research, she has made significant contributions to the field of resource recovery and environmental sustainability.

Awards

She has achieved several notable honors, such as being ranked first in the Third Physics Trial Olympiad (2005-2006), the top student of her M.Sc. program (2015), and receiving the Seventeenth Young Kharazmi Award (2016). She was also a Privileged Researcher at Sharif University of Technology (2018) and a recipient of the 27th Privileged Country Student Award.

 

Skills

Mahdokht has expertise in bioleaching, statistical optimization of environmental processes, heavy metals recovery, and advanced techniques in wastewater treatment.

 

Publications

  • Simultaneous recovery of Ni and Cu from computer-printed circuit boards using bioleaching: statistical evaluation and optimization
    Authors: M. Arshadi, S.M. Mousavi
    Citations: 147
    Year: 2014

 

  • Enhancement of simultaneous gold and copper extraction from computer printed circuit boards using Bacillus megaterium
    Authors: M. Arshadi, S.M. Mousavi
    Citations: 138
    Year: 2015

 

  • Multi-objective optimization of heavy metals bioleaching from discarded mobile phone PCBs: simultaneous Cu and Ni recovery using Acidithiobacillus ferrooxidans
    Authors: M. Arshadi, S.M. Mousavi
    Citations: 132
    Year: 2015

 

  • Content evaluation of different waste PCBs to enhance basic metals recycling
    Authors: M. Arshadi, S. Yaghmaei, S.M. Mousavi
    Citations: 105
    Year: 2018

 

  • Enhancement of simultaneous gold and copper recovery from discarded mobile phone PCBs using Bacillus megaterium: RSM based optimization of effective factors and evaluation of interactions
    Authors: M. Arshadi, S.M. Mousavi, P. Rasoulnia
    Citations: 83
    Year: 2016

 

  • Ni and Cu recovery by bioleaching from the printed circuit boards of mobile phones in non-conventional medium
    Authors: M. Arshadi, S. Nili, S. Yaghmaei
    Citations: 47
    Year: 2019

 

  • Optimized bioleaching of copper by indigenous cyanogenic bacteria isolated from the landfill of e-waste
    Authors: B. Arab, F. Hassanpour, M. Arshadi, S. Yaghmaei, J. Hamedi
    Citations: 46
    Year: 2020

 

  • Evaluating the optimal digestion method and value distribution of precious metals from different waste printed circuit boards
    Authors: M. Arshadi, S. Yaghmaei, A. Esmaeili
    Citations: 30
    Year: 2020

 

  • Optimal electronic waste combination for maximal recovery of Cu-Ni-Fe by Acidithiobacillus ferrooxidans
    Authors: M. Arshadi, S. Yaghmaei, S.M. Mousavi
    Citations: 28
    Year: 2019

 

  • Study of plastics elimination in bioleaching of electronic waste using Acidithiobacillus ferrooxidans
    Authors: M. Arshadi, S. Yaghmaei, S.M. Mousavi
    Citations: 28
    Year: 2019

 

  • Green recovery of Cu-Ni-Fe from a mixture of spent PCBs using adapted A. ferrooxidans in a bubble column bioreactor
    Authors: M. Arshadi, F. Pourhossein, S.M. Mousavi, S. Yaghmaei
    Citations: 27
    Year: 2021

 

  • Investigating critical parameters for bioremoval of heavy metals from computer printed circuit boards using the fungus Aspergillus niger
    Authors: M. Arshadi, A. Esmaeili, S. Yaghmaei
    Citations: 26
    Year: 2020

 

  • Advances in bioleaching of copper and nickel from electronic waste using Acidithiobacillus ferrooxidans: evaluating daily pH adjustment
    Authors: M. Arshadi, S. Yaghmaei
    Citations: 26
    Year: 2020

 

  • Simultaneous leaching of Cu, Al, and Ni from computer printed circuit boards using Penicillium simplicissimum
    Authors: A. Esmaeili, M. Arshadi
    Citations: 22
    Year: 2022

 

  • Fungal bioleaching of e-waste utilizing molasses as the carbon source in a bubble column bioreactor
    Authors: S. Nili, M. Arshadi, S. Yaghmaei
    Citations: 20
    Year: 2022

 

Conclusion:

Dr. Arshadi is a strong candidate for the Research for Best Researcher Award, given her impactful contributions to chemical engineering and sustainability. Her innovative solutions for recycling electronic waste exemplify excellence in research and innovation. Strengthening industry ties and expanding her interdisciplinary scope could position her as an even more influential figure in the field, deserving of accolades such as this award.