Geetanjali Mishra | Materials Technology | Best Researcher Award

Dr. Geetanjali Mishra | Materials Technology | Best Researcher Award

PHD at CSIR-Institute of Minerals & Materials Technology, India

Dr. Geetanjali Mishra is a Research Officer at The Bombay Textile Research Association, Mumbai. She earned her Ph.D. in Chemical Sciences from CSIR-Institute of Minerals & Materials Technology, specializing in antimicrobial composites. With extensive post-doctoral research at IIT Bombay and IACS, she has worked on biodegradable polymeric composites and water purification methods. Dr. Mishra has published widely and holds a patent for antimicrobial layered double hydroxides. She has received several awards, including a gold medal for her B.Sc. in Chemistry from Utkal University. Her research interests include inorganic-organic composites, bio-organic chemistry, and hydrometallurgical processing.

Professional Profiles

Education and Academic Degrees

2006 – 2009: Bachelor of Science in Chemistry (Honours), Utkal University, India (1st Rank) 2009 – 2011: Master of Science (Chemistry), Ravenshaw University, India (6th Rank) 2013 – 2018: Ph.D. in Chemical Sciences, AcSIR, CSIR-Institute of Minerals & Materials Technology, India Thesis Title: Synthesis of layered double hydroxide inorganic and organic composites and their antimicrobial activity Supervisor: Dr. Barsha Dash, Principal Scientist, Hydro & Electrometallurgy Department, CSIR-Institute of Minerals and Materials Technology, Bhubaneswar, India

Professional Research Experience

The Bombay Textile Research Association, India Sept. 2023 – Present: Research Officer Preparation of Lyocell-CNT composite high-strength carbon fiber Preparation of lyocell fibers and effect of incorporation of single-walled carbon nanotube on the properties of fibers. Indian Institute of Technology Bombay (IITB), India Jan. 2020 – Dec. 2022: Post-Doctoral Fellow, Department of Metallurgical Engineering & Materials Science Synthesis of biodegradable polymeric composites for packaging applications Synthesis of polycaprolactone (PCL) based polymeric composites with the incorporation of various fillers (like layered double hydroxides (LDH), carbonaceous materials, etc.) to act as packaging material. Indian Association for the Cultivation of Science (IACS), India Feb. 2018 – Dec. 2019: Research Associate (I), Department of Materials Science Synthetic mineralization by simple, cost-effective way for permanent removal of toxic contaminants from water. Removal of As3+ along with Fe3+ from industrial wastewater/acid mine drainage by precipitation method using simple salts. The process works by the coagulation-flocculation method. CSIR-Institute of Minerals & Materials Technology (IMMT), India Aug. 2013 – Feb. 2018: PhD Scholar, Department of Hydro & Electrometallurgy Synthesis of layered double hydroxide inorganic and organic composites and their antimicrobial activity Synthesis of layered double hydroxide based inorganic and organic composites by various routes like coprecipitation, ion-exchange, reconstruction, hydrothermal, etc. followed by their characterization and application as antimicrobial material.

Areas of Research

Inorganic-Organic composites Inorganic chemistry Bio-Organic Chemistry Various hydrometallurgical processing especially in the development of flow-sheet to recover non-ferrous metals from polymetallic nodules (PMN), low-grade ores, and secondaries through: Leaching Removal of iron Precipitation

Awards & Recognitions

2015: Awarded 2nd prize in oral presentation in ICNFM-2015 conference, Bhubaneswar, India.
2011: Sixth rank in M.Sc. (Chemistry), Ravenshaw University.
2009: Gold Medal in B.Sc. (Chemistry) for best science graduate, Utkal University.
2003: Awarded Rajya Puraskar (Governor Award) in Scouts & Guides.

Patent

A process for the preparation of thermally treated composite of Zn-Al layered double hydroxide having antibacterial activity. Barsha Dash, Sony Pandey, Geetanjali Mishra. CSIR patent number- 349714, Application Number: 2893/DEL/2013, Date of Grant: 21/10/2020.

Publications

  1. Impact of surfactants on SWCNT dispersion in N-methylmorpholine N-Oxide for cellulose dissolution, Publication date: 2024.
  2. Biodegradable layered double hydroxide based polymeric films for sustainable food packaging applications, Publication date: 2023.
  3. Curious Behavior of Fe3+-As3+ Chemical Interactions and Nucleation of Clusters in Aqueous Medium, Publication date: 2023.
  4. A Review on Corrosion, Adhesion, and Anti-Microbial Performance of Epoxy-Based Nanocomposite Coatings, Publication date: 2022.
  5. Synthesis and characterization of template-mediated mesoporous alumina nanostructures with efficient and fast adsorption of Congo red from aqueous solutions, Publication date: 2022.
  6. Recovery of lead as lead sulphide from anode slime using hydrometallurgical technique, Publication date: 2021.
  7. A brief review on the development of self-healing, hydrophobic and antifouling epoxy coating, Publication date: 2020.
  8. Iron control in wet chemical leaching of polymetallic nodule through combined reagentsPublication date: 2021.
  9. Effect of molecular dimension on gallery height, release kinetics and antibacterial activity of Zn-Al layered double hydroxide (LDH) encapsulated with benzoate and its derivatives, Publication date: 2019.
  10. Comparative evaluation of synthetic routes and Antibacterial/Antifungal Properties of Zn–Al Layered Double Hydroxides Containing Benzoate Anion, Publication date: 2018.
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Sharda Pandey | Materials’ application | Best Researcher Award

Ms. Sharda Pandey | Materials’ application | Best Researcher Award

PHD at the University of Lucknow, India

Sharda Pandey holds an M.Sc. in Physics and is currently pursuing a Ph.D. at the University of Lucknow, specializing in Experimental Physics within the Laser, Opto-Electronics & Photonics Laboratory under Prof. Anchal Srivastava. With a background in teaching and practical experience in electronics labs, she aims to apply her skills in advancing research and education. Sharda has achieved notable distinctions, including qualifying in NET and GATE-2022 in Physics. Recognized for her research, she received the Best Poster Presentation Award at ICAIR-2021 and the prestigious Shodh-medha Scholarship from the University of Lucknow, highlighting her dedication to academic and scientific pursuits. Materials’ application

Professional Profiles

Education

M.Sc. (Physics) from University of Lucknow, 2013 (67.14%) B.Sc. (PCM) from Dr. R.M.L. Avadh University, Ayodhya, 2011 (70.83%) Intermediate from U.P. Board, Govt. Girls Inter College, Gonda, 2008 (63.4%) High School from U.P. Board, S.P.K.P. Inter College, Gonda, 2006 (67.0%) Qualified NET (Physics) and GATE-2022 (Physics).

Work Experience

Pursuing Ph.D. in Physics at the University of Lucknow, focusing on Experimental Research in the Laser, Opto-Electronics & Photonics Laboratory under the guidance of Prof. Anchal Srivastava. Worked in the Department of Physics under the ‘Karma-yogi Scheme’ for 50 days with pay, receiving a certificate of work experience. Former faculty member at Career Convent Girls Degree College, Vikas Nagar, Lucknow. Practical Teacher for B.Sc. Electronics lab at the University of Lucknow for the session 2016-17.

Awards Received

Best Poster Presentation (Oral) Award for “Treatment of Water using Metal Oxide in Nanoform” at the International Conference on Advancements in Interdisciplinary Research (ICAIR-2021). Shodh-medha Scholarship from the University of Lucknow

Research Focus

Sharda Pandey’s research primarily focuses on the simulation and evaluation of perovskite solar cells, particularly investigating the utilization of various electron transport layers. Her contributions extend to studying the efficiency enhancement of perovskite thin-film solar cells through modeling techniques involving double-absorber and buffer layers. She collaborates with researchers like R.K. Shukla, A. Srivastava, and S. Rani, contributing to articles and conference papers in journals like Nanosystems, Journal of Optics, and Integrated Ferroelectrics. Sharda’s work aims to advance the understanding and practical application of perovskite materials in solar energy technologies, emphasizing efficiency and performance enhancements. Materials’ application

Publications

  1. Simulation and evaluation of perovskite solar cells utilizing various electron transport layers,Publication date: 2024.
  2. Modeling for Efficiency Enhancement of Perovskite Thin-Film Solar Cell by Using Double-Absorber and Buffer Layers, Publication date: 2024.
  3. Simulation study of solar cell with a double absorber layers of perovskites material using lead and lead-free material, Publication date: 2024.
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