# Vinit Kumar - Research Scientist | Catalytic Materials & Environmental Remediation Source: https://hello.cv/vinitkumar Delhi ## Links - LinkedIn | https://www.linkedin.com/in/vinitkumar12as - Email - Phone ## About Highly ambitious and results-driven researcher with a Master's in Chemistry, specializing in advanced catalytic materials for environmental remediation and sustainable energy. Proven expertise in catalyst synthesis, kinetic analysis, and electrocatalytic systems, demonstrated through significant contributions to water splitting, nitrate reduction, and plastic upcycling projects. Eager to leverage deep theoretical understanding and practical reaction engineering skills to drive innovative research and development initiatives in a forward-thinking R&D environment. ## Work ### Junior Research Fellow (JRF) | Indian Institute of Technology Jodhpur Led advanced research projects focused on developing novel electrocatalysts for sustainable energy and environmental applications, contributing to significant advancements in water splitting and green ammonia synthesis. - Developed oxygen vacancy-rich Layered-Double Hydroxide (LDH) catalysts, achieving over 10,000 stable electrochemical CV cycles for enhanced performance in water splitting. - Reduced energy consumption by 1V in electrocatalytic processes, significantly improving efficiency and mitigating carbon oxidation reactions. - Scaled up electrocatalytic processes using a 25 cm² AEM Electrolyzer, achieving industrial-level current densities for practical application. - Designed and optimized transition metal-based catalysts, enabling selective nitrate reduction to green ammonia for sustainable wastewater treatment. - Investigated Zn-NO3 battery configurations, demonstrating potential for sustainable energy storage applications. ### Master's Thesis Researcher | Indian Institute of Technology Mandi Conducted in-depth research on the synthesis and characterization of advanced catalysts for plastic upcycling, contributing to sustainable waste management solutions. - Synthesized and comprehensively characterized NiFe, CoFe, and ZnFe-LDH catalysts, optimizing their properties for efficient plastic upcycling. - Investigated the critical role of metal components in the glycolysis of Polyethylene Terephthalate (PET) bottles, enhancing understanding of reaction mechanisms. - Contributed to the development of novel catalytic approaches for converting waste plastics into value-added products. ## Education ### Indian Institute of Technology Mandi | Chemistry CGPA: 7.69/10 - Hydrogen Generation and Storage - Pericyclic Reactions - Chemistry of Main Group Elements - Group Theory & Spectroscopy - Chemical Thermodynamics and Electrochemistry - Computational Chemistry - Chemistry of Transition Elements ### Ramjas College, University of Delhi | Chemistry CGPA: 8.68/10 - IT Skills for Chemists - Pharmaceutical Chemistry - Green Methods in Chemistry - Novel Inorganic Solids - Industrial Chemicals and Environment ### Central Board of Secondary Education | Senior Secondary Education Grades: 93.6% ### U.P. Board | Matriculation Grades: 91% ## Awards ### Graduate Aptitude Test in Engineering (GATE) Qualified Government of India | 2024-03-01 Achieved qualification in GATE 2024, demonstrating strong aptitude in engineering and science disciplines relevant to postgraduate studies and research. ### IIT JAM Qualified Indian Institutes of Technology | 2022-03-01 Secured qualification in IIT JAM 2022, enabling admission to Master of Science programs at prestigious Indian Institutes of Technology. ## Publications ### Nanoarchitectonics of ZnFe-Layered Double Hydroxide Catalysts for Valorization of Waste Polyethylene Terephthalate Bottles into Value-Added Products Macromolecular Rapid Communication, Wiley | https://onlinelibrary.wiley.com/doi/10.1002/marc.202500001 Co-authored research on developing ZnFe-Layered Double Hydroxide Catalysts for converting waste PET bottles into valuable products, contributing to sustainable waste management. ### Boron Modified NiCoFe-LDH for Energy Saving Hydrogen Production Coupled with Sulfion Oxidation in Scalable AEM Seawater Electrolyzer Under Review Lead author on a manuscript under review, presenting novel Boron-modified NiCoFe-LDH catalysts for efficient hydrogen production and sulfion oxidation in scalable AEM seawater electrolyzers. ### Effect of hydrodynamic boundary layer on OER-COR selectivity of MnO2 polymorphs using Rotating Ring Disk Electrode Voltammetry Under Review Co-authored a manuscript under review, investigating the impact of hydrodynamic boundary layers on OER-COR selectivity of MnO2 polymorphs using advanced electrochemical techniques. ### Tailored Engineering of Layered Double Hydroxide Catalysts for Biomass Valorization: A Way Towards Waste to Wealth ChemSusChem, Wiley | https://onlinelibrary.wiley.com/doi/10.1002/cssc.202400001 Co-authored publication detailing the engineering of LDH catalysts for biomass valorization, presenting innovative methods for converting waste into valuable resources. ### Material Engineering of Cuº/Cu+ Sites and Oxygen Vacancies for Efficient In-Situ Hydrodeoxygenation of Lignin-Based Compounds ChemSusChem | https://onlinelibrary.wiley.com/doi/10.1002/cssc.202400002 Co-authored research on engineering copper sites and oxygen vacancies for efficient in-situ hydrodeoxygenation of lignin-based compounds, advancing sustainable chemical processes. ## Languages - English - Hindi ## Skills ### Physical Characterization Proficient - XRD - XPS - TEM - FTIR - NMR - EPR - UV-Vis Spectroscopy - Raman Spectroscopy ### Electrochemical Techniques Proficient - 25cm² Zero Gap AEM Electrolyzer - RRDE - Cyclic Voltammetry - Chronoamperometry - Chronopotentiometry - Mott-Schottky Analysis - Bode & Nyquist Analysis ### Material Synthesis & Fabrication Proficient - Hydro/Solvothermal Synthesis - Co-precipitation Method - Electrode Fabrication - Catalytic Material Synthesis ### Software & Data Analysis Proficient - MS Office - ChemDraw - OriginPro - Avantage (XPS PeakFit) - Gatan Digital Micrograph (TEM analysis) ### Chemical Processes Proficient - CO2 Conversion - Operando Techniques ## Interests ### Research Interests - Direct Seawater Electrolysis - High Entropy Oxides and Alloys - Organic Transformation Reactions ## References ### Professor Venkata Krishnan MSc Project Supervisor, IIT Mandi | vkn@iitmandi.ac.in | +91-9418425432 ### Dr Prashant Kumar Gupta Project Investigator, IIT Jodhpur | guptapk@iitj.ac.in | +91-7839992187 ## Source Read this profile on Hello.cv: https://hello.cv/vinitkumar Create your free profile at https://hello.cv