Jully Patel
Materials Science · Purdue University West Lafayette
Publications
49
Citations
253
Est. group size
~3
Recurring co-author estimate
Active years
49
Publishing since 1978
Jully Patel's research focuses on chemistry aimed at artificial photosynthesis, especially designing catalysts that can split water using light or electricity, a process relevant to clean energy and fuel production. Much of the recent work centers on metal-organic frameworks (MOFs) and metal complexes (containing iron, ruthenium, cobalt, copper, and manganese) that act as catalysts for water oxidation and proton reduction reactions. Earlier work in the record also includes crystal structure determination studies of small molecules and proteins.
Publication output was high in 2017, dropped sharply and stayed low with occasional gaps (e.g., no publications in 2022-2023), then picked back up modestly from 2024 onward.
Generated by claude-sonnet-5 from public bibliographic data · Jul 20, 2026
- Simplified Assembly Process for Efficient Light‐Driven MOF‐Based Water Oxidation Catalysts in Acidic pH
ChemPhotoChem · 2026
- Fe‐Triazolate Metal–Organic Frameworks as Water Oxidation Catalysts with Dual Photoanode Functionality
Angewandte Chemie International Edition · 2025
- Demonstration of the Radical Coupling Pathway in a Fast Fe-Based Water Oxidation Catalyst
Artificial photosynthesis. · 2025
- Fe‐Triazolate Metal–Organic Frameworks as Water Oxidation Catalysts with Dual Photoanode Functionality
Angewandte Chemie · 2025
- Rational Design of Improved Ru Containing Fe‐Based Metal‐Organic Framework (MOF) Photoanode for Artificial Photosynthesis
Small · 2024
- Evaluation of Ce-MOFs as Photoanode Materials for the Water Oxidation Reaction: The Effect of Doping with [Ru(bpy)(dcbpy)(H<sub>2</sub>O)<sub>2</sub>]<sup>2+</sup> Catalyst
Inorganic Chemistry · 2024
- Twelve CO molecules for the price of one. A simple water-soluble organometallic CORM, [Mn(CO)3(µ3-OH)]4
Polyhedron · 2024
- Systematic Influence of Electronic Modification of Ligands on the Catalytic Rate of Water Oxidation by a Single‐Site Ru‐Based Catalyst
ChemSusChem · 2021
- Visible light-driven simultaneous water oxidation and quinone reduction by a nano-structured conjugated polymer without co-catalysts
Chemical Science · 2020
- Crystal Structure of 5-Butoxy-4-((3-butoxyphenyl)diazenyl)-3-methyl-1-phenyl-1H-pyrazole
Crystallography Reports · 2019
- Electrocatalytic proton and water reduction by a Co(III) polypyridyl complex
Polyhedron · 2018
- CCDC 1517946: Experimental Crystal Structure Determination
The Cambridge Structural Database · 2018
- μ-Pyridine-bridged copper complex with robust proton-reducing ability
Dalton Transactions · 2017
- Competent Electrocatalytic and Photocatalytic Proton Reduction by a Dechelated [Co(tpy)<sub>2</sub>]<sup>2+</sup> Scaffold
European Journal of Inorganic Chemistry · 2017
- Electronic Effect on Catalytic Water Oxidation by Single Site [Ru(QCl–tpy)(bpy)(OH <sub>2</sub> )] <sup>2+</sup> Catalyst
ChemistrySelect · 2017
- The Cambridge Structural Database×7
- European Journal of Inorganic Chemistry×2
- ChemistrySelect×2
- Polyhedron×2
- Small×1
- Manish Jana
Materials Science · Purdue University West Lafayette
- Yongzhe Li
Materials Science · Purdue University West Lafayette
- Jeremy M. Smith
Materials Science · Indiana University
- Diana Perales
Materials Science · Purdue University West Lafayette
- Chun‐Hsing Chen
Materials Science · Indiana University
This profile was generated automatically from public scholarly data (OpenAlex). Group size and activity levels are estimates derived from co-authorship patterns.
Last updated Jul 20, 2026.
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