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Preparation of silica nanocapsules containing phase change material

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2023
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Özet (EN)

Silica nanoparticles (SNPs) can be produced in small diameters with good reproducibility, stability, and biocompatibility for carrying phase changing materials (PCM) to develop a new formulation for heating and cooling applications. In this work, a capsule-like silica structure was obtained to carry nonadecane as a PCM and characterized by dynamic light scattering (DLS), zeta potentials, scanning electron microscopy (SEM), Fourier- transform Infrared (FTIR) and differential scanning calorimetry (DSC). Classically, SNPs are synthesized by Stöber method as empty formulations. To achieve a capsule-like structure with small sizes, we used a modified technique including an oil phase containing dissolved PCM addition to the water phase at lower temperatures. This method ensures a slower and controlled reaction which allows smaller particle sizes. SNPs were synthesized in two types as nanodecane loaded and empty as a control. After the synthesis, characterization steps were performed. First of all, particle size was checked by DLS and found as 50 nm. Zeta potentials were also measured as -30 mV'dir. Which suggests the SNP formulation is stable in water. SEM images showed that particles are synthesized successfully with a spherical shape. Also, SEM images confirm the measured nanoparticle size by DLS. FTIR showed that SNPs were synthesized with the characteristic peaks at 1100, 964 and 796 cm -1. According to DSC results, nonadecane was loaded into SNPs confirmed by the peaks around 25-40 o C while the empty formulation showing no peaks. These results show that nanodecane loaded SNP is a good candidate for PCM applications such as building heating and cooling or heating pads. ii 2023, 58 pages Keywords: Phase changing materials (PCM), Silica nanoparticles (SNP)

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Aboubaker-sadıck Egueh Iyeh

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Aboubaker-sadıck Egueh Iyeh (Master Thesis). Preparation of silica nanocapsules containing phase change material, 2023, Çankırı Karatekin Üniversitesi.

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