Papers by Author: Qi Song Shi

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Abstract: The clothing containing phase change material (PCM) with function of absorbing the body-released heat has wide applications. In this paper, a novel protective clothing based phase change material was investigated. The results show that PCM has suitable melting temperature, large heat flow, stability after repeating applications, and it is convenient for application in cooling. Moreover, the manufacturing process has a great affect on the property of the titled material. The above inorganic composite was selected to prepare the temperature self-operating protective clothing, which can efficiently lighten the demic thermal stresses at high and low temperatures.
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Abstract: The myristic acid/silicon dioxide composite materials were prepared by sol-gel methods. The myristic acid was used as the phase change material for thermal energy storage, with the SiO2 acting as the supporting material. The structural analysis of these form-stable myristic acid /SiO2 composite phase change materials was carried out using Fourier transformation infrared spectroscope (FT-IR).The microstructure of the form-stable composite phase change materials was observed by a scanning electronic microscope (SEM). The thermal properties was investigated by a differential scanning calorimeter (DSC).The SEM results showed that the myristic acid was well dispersed in the porous network of SiO2. And the new nanocomposite material has favorable thermal storage capacity and can be applied to solar energy storage, industrial waste heat, recovery of waste heat and as civilian structural materials.
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Abstract: The ultrafine fibers based on the composites of polyethylene glycol(PEG) and polyvinylpyrrolidone(PVP) were prepared successfully via electrospinning as phase change materials. The thermal properties and morphology of the composite fibers were studied by differential scanning calorimetry(DSC) and scanning electron microscopy(SEM), respectively.
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Abstract: Chitosan has prompted the continuous impetus for the development of safe and effective drug delivery systems because of its unique physicochemical and biological characteristics. In this study, PEG-chitosan microspheres loaded with levofloxacin for carrying drugs were prepared by the emulsion cross-linking method. The effect of drug process, the emulsifier, the amount of crosslinking agent, stirring speed, temperature, crosslinking time on the prepare experiment were studied. The effect of the quantity of chitosan and PEG, the mass ratio of chitosan and levofloxacin on the drug loading and release ability were studied in drug release experiments too.
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Abstract: Rare-earth metal-organic frameworks [Tb2(pdc)3(H2O)9]n3nH2O, were synthesized and characterized by elemental analysis, IR spectra and single-crystal X-ray diffraction. The title compound consisted of one-dimensional dual-chains, in which each metal atom is nine-coordinated with oxygen atoms. The carboxylate groups of pdc provided two kinds of coordination ways as bidentate and monodentate. The solid-state photoluminescence measurement exhibited green light-emitting characteristic of terbium (III) coordination polymer, and the fluorescence intensities were stronger than that of the europium compound with the same ligand.
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Abstract: In the present study, poly(ethylene glycol)(PEG) with different molecular weights were blended with different fatty acids: capric, lauric or stearic acid as a thermal energy storage material. Latent heat thermal energy storages properties of the blends were evaluated by using the differential scanning calorimetry (DSC). The thermal analysis indicated that it is possible to obtain homogeneous PEG/fatty acid blends by mixing in the melt and subsequent solidification. The PEG-fatty acids blends had greater enthalpy and exhibited good thermal stability and can be used as a new kind of phase change material for thermal energy storage material for thermal energy storage and temperature control. The heat of transition for PEG10 000/ stearic acid (1:3 w/w) blend was on extremely high level of 253.2 J.g-1 which is 35% more than for pure PEG 10000
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