1 |
Phase change material impregnated wood for passive thermal management of timber buildings Temiz A, Hekimoglu G, Demirel GK, Sari A, Amini MHM International Journal of Energy Research, 44(13), 10495, 2020 |
2 |
Experimental analysis for optimum thermal performance and thermophysical parameters of MWCNT based capric acid PCM by using T-history method Yadav C, Sahoo RR Powder Technology, 364, 392, 2020 |
3 |
Screening of lipases for production of novel structured lipids from single cell oils Abed SM, Elbandy M, Abdel-Samie MA, Ali AH, Korma SA, Noman A, Wei W, Jin QZ Process Biochemistry, 91, 181, 2020 |
4 |
Development and energy evaluation of phase change material composite for building energy-saving Ji R, Zou ZH, Liu L, Wei S, Qu SL International Journal of Energy Research, 43(14), 8674, 2019 |
5 |
Silica fume/capric acid-palmitic acid composite phase change material doped with CNTs for thermal energy storage Sari A, Bicer A, Al-Ahmed A, Al-Sulaiman FA, Zahir MH, Mohamed SA Solar Energy Materials and Solar Cells, 179, 353, 2018 |
6 |
Polystyrene microcapsules with palmitic-capric acid eutectic mixture as building thermal energy storage materials Doguscu DK, Altmtas A, Sari A, Alkan C Energy and Buildings, 150, 376, 2017 |
7 |
Thermal energy storage characteristics of bentonite-based composite PCMs with enhanced thermal conductivity as novel thermal storage building materials San A Energy Conversion and Management, 117, 132, 2016 |
8 |
Fabrication and thermal characterization of kaolin-based composite phase change materials for latent heat storage in buildings Sari A Energy and Buildings, 96, 193, 2015 |
9 |
Synthesis and characterization of micro/nano capsules of PMMA/capric-stearic acid eutectic mixture for low temperature-thermal energy storage in buildings Sari A, Alkan C, Ozcan AN Energy and Buildings, 90, 106, 2015 |
10 |
Passive temperature control of an outdoor photobioreactor by phase change materials Uyar B, Kapucu N Journal of Chemical Technology and Biotechnology, 90(5), 915, 2015 |