MUMBAI, India, Aug. 17 -- Intellectual Property India has published a patent application (202621077714 A) filed by Krushna Rajendra Zoting; Kinjal Chandrshekhar Mahure; Prakash Bhimrao Chikte; Om Gangadhar Jadhav; and Dr. Haribhau Mohan Gholap on June 24, 2026, for A System And Method For Pseudocapacitive Electrode Design, Optimization And Fabrication Based On A Pseudocapacitive Sabatier Principle.

Inventors include Krushna Rajendra Zoting; Kinjal Chandrshekhar Mahure; Prakash Bhimrao Chikte; Om Gangadhar Jadhav; and Dr. Haribhau Mohan Gholap.

The application for the patent was published on August 14, 2026, under issue no. 33/2026.

Abstract: A System and Method for Pseudocapacitive Electrode Design, Optimization and Fabrication Based on a Pseudocapacitive Sabatier Principle The present invention relates to a computer-implemented pseudocapacitive electrode design, optimization and fabrication system (100) comprising an atomic-scale electrode surface modelling module (100), an electronic structure analysis module (102), an adsorption energy calculation module (104), a quantum capacitance determination module (112), a pseudocapacitance determination module (114), a coupled quantum capacitance-pseudocapacitance framework (116), a volcano relationship analysis module (128) and a pseudocapacitive Sabatier principle engine (130) configured to identify optimum adsorption-energy conditions for enhanced electrochemical performance, further comprising a diffusion-coupled optimization module (144), a multi-ion electrolyte optimization module (150) and a fabrication recommendation engine (174) configured to generate fabrication parameters and fabricate optimized electrode materials through a Sabatier-optimized electrode fabrication module (180), thereby enabling predictive identification, engineering and realization of high-performance pseudocapacitive electrode materials exhibiting improved capacitance, ion-transport characteristics, active-site utilization and electrochemical energy-storage performance.

Disclaimer: Curated by HT Syndication.