Muhammad Ghufran Source Confirmed
Affiliation confirmed via AI analysis of OpenAlex, ORCID, and web sources.
Researcher
University of Arkansas at Fayetteville
faculty
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Biography and Research Information
OverviewAI-generated summary
Muhammad Ghufran's research focuses on the synthesis and application of encapsulated phase change materials (PCMs) for thermal management. His work involves developing nano-sized PCMs using methods such as the sol-gel process, often encapsulating materials like paraffin, silica, titania, and myristic acid. These synthesized materials are investigated for their potential to enhance thermal performance in various applications, including silicone gel insulation and electronics cooling.
Ghufran also investigates other engineering and materials science topics, including performance analysis of coated inserts in machining processes and remaining life assessment of storage tanks using ASME standards. His scholarly contributions are reflected in a h-index of 11, with over 1,050 citations across 25 publications. He has collaborated with researchers like David Huitink and Joshua Kasitz at the University of Arkansas at Fayetteville.
Metrics
- h-index: 11
- Publications: 25
- Citations: 1,052
Selected Publications
- Addition of Thermal Energy Storage to Thermal Interface Materials Using Dispersed Encapsulated Phase Change Materials (2025) DOI
- Advances in encapsulated phase change materials for integration in thermal management applications (2025) DOI
- Enhanced Passive Cooling in Thermal Interface Materials via Encapsulated Phase Change Material Additives (2024) DOI
- Methodology to evaluate the thermal performance of the encapsulated phase change materials based nanofluid coolant (2024) DOI
- Impact of Encapsulated Phase Change Material Additives for Improved Thermal Performance of Silicone Gel Insulation (2024) DOI
- Synthesis of silica-encapsulated myristic acid phase-change-assisted nanocapsules for thermal management applications (2024) DOI
- Thermal and Electrical Performance of Silicone Gel Insulation With Encapsulated Phase Change Material Additives (2023) DOI
- Synthesis and thermal performance of nano-sized paraffin-based titania encapsulated PCMs via sol–gel method (2023) DOI
- Synthesis of ePCMs for thermal management of electronics (2023) DOI
- Synthesis of nano-size paraffin/silica-based encapsulated phase change materials of high encapsulation ratio via sol–gel method (2023) DOI
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