Article detail · 2013
Development Characterization and Latent Heat Thermal Energy Storage Properties of Neopentyl Glycol Fatty Acid Esters as New Solid Liquid PCMs
Journal
Industrial & Engineering Chemistry ResearchISSN 0888-5885
The ISSN points to another catalog journal; the name is from the YÖKSİS record.
- Year
- 2013
- Type
- article
Data source split
- YÖKSİS YÖKSİS article record
- YÖKSİS venue Industrial & Engineering Chemistry Research
- Catalog match (ISSN) Industrial and Engineering Chemistry Research
- OpenAlex OpenAlex enrichment (abstract, citations, topics)
Abstract
OpenAlex · English
Neopentyl glycol (NPG) is known as a solid–solid phase change material (PCM) and shows a solid–solid phase transition at 41.9 °C. Although it has a good latent heat capacity of 141.91 J/g, the low degradation temperature interval (80–150 °C) is close to its solid–liquid phase change temperature (129.46 °C), which lessens its latent heat thermal energy storage (LHTES) potential. The present study is aimed to eradicate these disadvantages by synthesizing its ester compounds with three kinds of fatty acid chlorides. The developed NPG-DL, NPG-DM, and NPG-DP esters were characterized using FT-IR and 1 H NMR spectroscopy techniques. The DSC results showed that the esters had a melting point and latent heat value in the range of about 11–35 °C and 98–124 J/g. The synthesized PCMs had high decomposition temperature ranges, noncorrosivity, and good odor properties. The PCMs also exhibit good thermal reliability and chemical stability besides their increased thermal conductivity.
Topics
Citations
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14 citations
OpenAlex cited_by_count (cache / database)
4 publications in the local catalog that cite this work (OpenAlex reference match; not the full global list).
- Novel urea‐based compounds as solid‐solid phase change materials: 1,3‐bisstearoylurea and 1,1,3,3‐tetrastearoylurea for thermal energy storage applications 2022
- Novel urea‐based compounds as solid‐solid phase change materials: 1,3‐bisstearoylurea and 1,1,3,3‐tetrastearoylurea for thermal energy storage applications 2022
- Production, characterization and thermal properties of leak-proof poly(ethylene glycol)/ tea waste biochar/waste poly(vinyl chloride) composite phase change materials for thermal energy storage 2026
- Production, characterization and thermal properties of leak-proof poly(ethylene glycol)/ tea waste biochar/waste poly(vinyl chloride) composite phase change materials for thermal energy storage 2026