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首页> 外文期刊>RSC Advances >Nano-heat-sink thin film composite of PC/three-dimensional networked nano-fumed silica with exquisite hydrophobicity
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Nano-heat-sink thin film composite of PC/three-dimensional networked nano-fumed silica with exquisite hydrophobicity

机译:PC /具有精细疏水性的三维网状纳米气相二氧化硅的纳米散热薄膜复合材料

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摘要

Efficient utilization of fumed silica with thermoset resins had been investigated for high temperature applications, which led to extensive exploration of newer materials. The present prospect represents a similar progress in the field of thermoplastic material and focuses on the burgeoning field of heat sinking materials and hydrophobicity. Nanoscale coalescence of Nano Fumed Silica (NFS) filler in a polycarbonate (PC) matrix is ameliorated by two different techniques viz. solvent casting and spray coating. The spray-coating technique was reconnoitred by numerical modelling parameters. The characteristic peak appears at 1094 cm(-1) and 3821 cm(-1) in the FTIR which corroborate the interaction between PC and NFS. PC/NFS solution with workable viscosity 25 cP exemplifies homogeneous dispersion in the PC matrix ascertained by FESEM with utmost loading of 10 wt% NFS. An 85% increment in contact angle was observed which justified with accretion in surface roughness (12.5 nm) of the composite as well as from the Cassie-Baxter model. Effective thermal conductivity of the composite was mathematically computed with 46% decrement as compared to a pristine PC counterpart, which is in agreement with the TGA results as char residue is enhanced from 22% to 49%. The results affirm that the spray-coated samples give more efficacy in terms of heat sinking capacity and hydrophobic characteristics as compared to solvent-casted films and justifies its competency to replace conventional thermoplastic composites. So, these membranes can be effectively and economically employed as heat sinking source in automotive/automobile industry, electronic gadgets and defence electronics.
机译:对于高温应用,已经研究了热解树脂与热解法二氧化硅的有效利用,从而导致了对新材料的广泛探索。目前的前景代表了热塑性材料领域的类似进展,并专注于散热材料和疏水性的新兴领域。通过两种不同的技术来改善聚碳酸酯(PC)基体中纳米气相二氧化硅(NFS)填料的纳米级聚结。溶剂浇铸和喷涂。通过数值建模参数再次验证了喷涂技术。该特征峰出现在FTIR中的1094 cm(-1)和3821 cm(-1),这证实了PC和NFS之间的相互作用。粘度为25 cP的PC / NFS溶液可通过FESEM确定在PC基质中的均匀分散,最大负载为10 wt%NFS。观察到接触角增加了85%,这与复合材料以及Cassie-Baxter模型的表面粗糙度(12.5 nm)的增加是合理的。与原始PC对应物相比,复合材料的有效导热系数通过数学计算降低了46%,这与TGA结果一致,因为炭渣残留量从22%增加到49%。结果证实,与溶剂浇铸膜相比,喷涂样品在散热能力和疏水特性方面具有更高的功效,并证明了其替代常规热塑性复合材料的能力。因此,这些膜可有效且经济地用作汽车/汽车行业,电子产品和国防电子的散热源。

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