Pradeep Kumar Singh
- Last known institution:
- GLA University
- ORCID:
- 0000-0002-9504-1504
3
h-index
0
i10-index
41
Citations
13
Works
Trends over time
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Citation overview
Publications (bars) and citations (line) by year
- Publications
- Citations
Citation history
Publication history
h-index evolution
Cumulative h-index by year
Most-cited works
- Waste heat recovery cycles integration into a net-Zero emission solar-thermal multi-generation system; Techno-economic analysis and ANN-MOPSO optimization20249 citations
- Multi-thermal recovery layout for a sustainable power and cooling production by biomass-based multi-generation system: Techno-economic-environmental analysis and ANN-GA optimization20244 citations
- Construction of a novel coffee husk-derived biochar-supported Ce2Sn2O7-Sb2O3 composites for enhanced visible light-driven photocatalytic degradation of metronidazole and H2 production20253 citations
- Mechanism of oxygen generation via the oxygen evolution reaction in transition metal chalcogenides: A theoretical study20253 citations
- Coupling a thermoelectric-based heat recovery and hydrogen production unit with a SOFC-powered multi-generation structure; an in-depth economic machine learning-driven analysis20243 citations
- Harnessing boron nitride monolayers with dodecagonal porous as an anode material in potassium ion batteries: A computational study20253 citations
- Synthesis of a novel Ti3C2 MXene–based nanocomposite for photocatalytic wastewater treatment and CO2 conversion: DFT analysis, mechanistic insights, and process optimization20252 citations
- Investigation of aluminum nitride monolayer with biphenylene network as a potential negative electrode for magnesium ion battery20252 citations
- Enhanced wastewater purification and photocatalytic green energy production via a novel CaIn₂S₄-coupled BiFeO₃ nanocomposite: Characterization and mechanistic insights20252 citations
- Waste heat harness in a thermal energy system using TEGs, and SCO2 brayton cycle driven by renewable sources for electricity and liquid hydrogen Production: Thermo-Economic optimization using ANNs20251 citations