Papers
2
Total Citations
56
H-Index
2
About
Zeke Li is a pioneering researcher at the intersection of supramolecular chemistry and smart energy systems, whose work bridges fundamental materials science with cutting-edge optimization algorithms. His most impactful contribution lies in the development of hydrogen-bonded supramolecular adhesives, a field where his 2023 paper has garnered 52 citations for its transformative approach to achieving robust, tunable bonding across diverse substrates—work that addresses critical needs in both established industries and emerging technologies. Simultaneously, Li has made significant strides in sustainable energy management, introducing a novel robust optimization framework that integrates robotic process automation with grey wolf optimization for smart demand-side management in microgrids. This 2025 work, already attracting attention with 4 citations, tackles the pressing challenges of renewable energy unpredictability and fluctuating load demands. Li’s dual expertise exemplifies a rare ability to innovate across disciplines, from molecular-level adhesive design to system-level energy solutions. His research not only advances fundamental understanding but also offers practical pathways toward more responsive materials and resilient, cost-effective microgrids, positioning him as a versatile contributor to both materials science and sustainable engineering.
Research Focus
Key Achievements
Top Papers
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