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Published on: May 2, 2016
Novel Fumed Silica-Based Shape-Stabilized Phase Change Materials with Magnetically Boosted Charging Efficiency and
Nguyen Bui Tam Nhu1, Ho Phuong1, Nguyen Ngoc Que Anh1
1Faculty of Chemical and Food Technology, Ho Chi Minh City University of Technology and Education (HCMUTE), 1 Vo Van Ngan, Thu Duc, Ho Chi Minh City 700000, Vietnam.
None:
In this work, 1-octadecanol (OD) was combined with fumed silica (F-SiO2) and Fe3O4 nanoparticles to form OD/F-SiO2/Fe3O4 shape-stabilized phase change materials (SSPCMs) with low thermal conductivities (TCs) and magnetically boosted charging efficacy. The SSPCMs were studied with varying OD contents of 50-80% and Fe3O4 contents of 5.0-12.5%. F-SiO2 possessed a suitable porosity to stabilize up to 70% OD without liquid leakage. The 70% OD/F-SiO2/Fe3O4 SSPCM exhibited a high heat storage capacity of 147.6 J/g and excellent durability after 500 accelerated thermal cycles. In comparison to pure OD with a low TC of 0.284 W/(m·K), those of 50-70% OD SSPCMs were further reduced to 0.156-0.193 W/(m·K) owing to the addition of F-SiO2 and Fe3O4 nanoparticles with low TCs. In addition, the SSPCMs possessed superparamagnetism inherited from Fe3O4 nanoparticles, enabling boosted magnetothermal conversion and storage ability. Indeed, under a low alternating magnetic field (intensity of 0.056 mT), the prepared 70% OD/F-SiO2/Fe3O4 SSPCM was rapidly heated from ∼34 to 76 °C in 360 s, which was 6.4 and 3.8-fold superior to being heated by a convective oven at 100 and 150 °C, respectively. A thermal pad derived from the 70% OD/F-SiO2/Fe3O4 SSPCM exhibited a bi-functional thermotherapy, simultaneously maintaining heat release within 50-55 °C for 30 min and 40-50 °C for 16 min, which was highly suited for high and mid-level thermotherapy, respectively. These merits endow the OD/F-SiO2/Fe3O4 SSPCMs with a promising potential in practical thermotherapy applications.
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