Balaji Mandal | Rechargeable Battery | Excellence in Research

Dr Balaji Mandal | Rechargeable Battery | Excellence in Research

Scientist at Bhabha Atomic Research Centre, India

Dr. Balaji P. Mandal is a distinguished Scientific Officer (G) at the Chemistry Division of Bhabha Atomic Research Centre (BARC), Mumbai, and an Associate Professor at Homi Bhabha National Institute. Born on January 5, 1980, he specializes in inorganic chemistry and materials science. With a PhD from the University of Mumbai and postdoctoral experience at Wayne State University, USA, Dr. Mandal has made significant contributions to energy storage, multiferroic materials, and nuclear waste immobilization. His work bridges fundamental research and practical applications, earning him numerous accolades and recognition in the scientific community.

Professinal Profile

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Education 🎓

Dr. Mandal holds a B.Sc. (2001) and M.Sc. (2003) in Chemistry from the University of Burdwan, India. He earned his PhD in Inorganic Chemistry from the University of Mumbai in 2009. He further enhanced his expertise with a postdoctoral fellowship at Wayne State University, USA (2011-2012). His academic journey reflects a strong foundation in chemistry, paving the way for his groundbreaking research in materials science and energy technologies.

Experience 💼

Dr. Mandal has been a Scientist at BARC since 2012, where he leads research on advanced materials for energy storage and nuclear applications. He also teaches inorganic chemistry and materials science at BARC and Homi Bhabha National Institute. His postdoctoral work at Wayne State University focused on pyrochlores and multiferroic materials. With over 95 publications and multiple technology transfers, Dr. Mandal is a key figure in advancing battery technologies and materials science.

Awards and Honors 🏆

Dr. Mandal has received numerous accolades, including the SMC-Bronze Medal (2022), DAE-SSPS Young Achiever Award (2017), and DAE-Young Scientist Award (2012). He is a member of the National Academy of Sciences, India, and has won several best poster awards at international conferences. His contributions to materials chemistry and energy storage have been widely recognized, making him a prominent figure in his field.

Research Focus 🔬

Dr. Mandal’s research focuses on:

  1. Electrodes and electrolytes for rechargeable batteries 🔋
  2. Ferroelectric and multiferroic materials 🧲
  3. Dielectric materials for energy storage ⚡
  4. Materials for nuclear waste immobilization ☢️
    His work aims to develop sustainable energy solutions and advanced materials for industrial and environmental applications.

Publication Top Notes 📚

  1. Green synthesis of highly stabilized nanocrystalline silver particles by a non-pathogenic fungus 🍄
  2. Magnetic, Ferroelectric, and Magnetocapacitive Properties of Sc-Doped BiFeO3 Nanoparticles 🧲
  3. Order–disorder transition in Nd2−yGdyZr2O7 pyrochlore solid solution 🔄
  4. Preparation, XRD and Raman studies on RE2Hf2O7 compounds 🧪
  5. Gd2Zr2O7 pyrochlore: potential host matrix for nuclear waste ☢️
  6. Inorganic–organic multiferroic hybrid films of Fe3O4 and PVDF 🎥
  7. Enhanced dielectric, ferroelectric properties in PVDF–BaFe12O19 composites ⚡
  8. Improved magnetic and ferroelectric properties of Sc and Ti codoped BiFeO3 🧲
  9. Oxygen vacancy enhanced room temperature magnetism in Al-doped MgO nanoparticles 🔬
  10. Hybrid multiferroic nanostructure with magnetic–dielectric coupling 🧲⚡

Conclusion 🌟

Dr. Balaji P. Mandal is a leading scientist in materials chemistry, with a focus on energy storage, multiferroics, and nuclear waste management. His extensive research, numerous awards, and contributions to technology transfer highlight his impact on science and industry. Through his innovative work and dedication, Dr. Mandal continues to advance sustainable energy solutions and materials science, inspiring future generations of researchers. 🚀

 

Rawdah Whba – energy storage – Best Researcher Award

Ms. Rawdah Whba - energy storage - Best Researcher Award

Taiz University & Istanbul medeniyet üniversitesi - Yemen

AUTHOR PROFILE

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EARLY ACADEMIC PURSUITS:

Ms. Rawdah Whba's academic journey began with distinction, completing her first bachelor's degree in Chemistry at Taiz University, Yemen, with an impressive cumulative grade of 91.12%. She continued her pursuit of knowledge, obtaining a second bachelor's degree, this time from the Faculty of Applied Science at Taiz University, with an exceptional cumulative grade of 93.18%. Her academic excellence was recognized with prizes from the President of Yemen and the National Organization for Community Development.

PROFESSIONAL ENDEAVORS:

Following her academic achievements, Ms. Whba served as a lecturer in the Chemistry Department at Taiz University from 2009 to 2014. During this period, she received numerous distinctions and certificates of appreciation. Notably, she represented the syndicate of Taiz University staff in Yemen from 2014 onwards, showcasing her leadership and collaborative skills.

RESEARCH FOCUS AND CONTRIBUTIONS:

Ms. Whba's research journey began with a scholarship from the Yemeni government to pursue a master's and Ph.D. In 2017, she earned her master's degree in Chemistry Science from the University Kebangsaan Malaysia (UKM), and in 2022, she completed her Ph.D. in Chemistry at the same institution. Her research interests span polymer chemistry and physical chemistry, with a focus on electrochemistry. Notably, her work includes the synthesis of grafted polymers based on epoxidized natural rubber and the characterization of energy storage devices.

PUBLICATIONS AND ACADEMIC CITES:

Ms. Whba's contributions to the field are evident through her publications in international refereed journals. These publications cover topics such as electroconductivity of composite membranes and the synthesis and characterization of solid biopolymer electrolytes. As a reviewer, she has evaluated research articles and book chapters, showcasing her expertise in the field.

LEGACY AND FUTURE CONTRIBUTIONS:

Ms. Rawdah Whba's legacy is marked by her academic achievements, research contributions, and active involvement in professional memberships. Her continuous pursuit of knowledge, evident from her undergraduate studies to her postdoctoral fellowship at Istanbul Medeniyet University (IMU) in Turkey, positions her as a dynamic and promising scholar. With proficiency in various analytical and research techniques, she is poised to make significant contributions to the fields of polymer chemistry and electrochemistry in the future.

NOTABLE PUBLICATION

Influence of binary lithium salts on 49% poly(methyl methacrylate) grafted natural rubber based solid polymer electrolytes.  2020 (29)