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Effect of Exfoliated Graphene Defects on Thermal Conductivity of Water Based Graphene Nanofluids

机译:剥落石墨烯缺陷对水基石墨烯纳米流体导热率的影响

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In this work, sonication assisted exfoliated Graphene (Gr) was separated into five different suspensions using a systematic centrifugation scheme (4000-500 rpm) for the two different solvents N-Methyl-2-Pyrrolidone (NMP) and N, N-dimethylformamide (DMF). Gr dispersions in deionized water (DW) were prepared by the re-dispersion process with the aid of vacuum filtration. Systematic thermal conductivity (TC) measurements were conducted separately on the prepared Gr dispersion in DW with rising temperature ranging from 25 to 60°C. Defects in exfoliated Gr samples were identified in terms of intensity ratio of D and G band (I_D/I_G) of Raman spectroscopy. For a fixed time of sonication values of I_D/I_G were found considerably higher in higher centrifugation speed (rpm). This phenomenon was perceived for both of the solvents. However, obtained values of I_D/I_G for the exfoliated Gr in NMP (Gr-NMP) were lower than that of Gr exfoliated by DMF (Gr-DMF). Lowest values of I_D/I_G found for 500 rpm, were 0.697 and 0.879 for the Gr-NMP and Gr-DMF respectively. Effect of exfoliated Gr defects were evaluated on the TC of Gr dispersed DW nanofluids. At 60°C, TC of Gr-NMP dispersion in DW was obtained 1.146 W/m-K for I_D/I_G of 0.697 (500 rpm) and 0.935 W/m-K for I_D/I_G of 0.916 (4000 rpm). Similarly occurrence was also apparent for the Gr-DMF dispersion in DW.
机译:在这项工作中,使用系统离心方案(4000-500rpm)将超声处理辅助剥落的石墨烯(GR)分为五种不同的悬浮液,用于两种不同的溶剂N-甲基-2-吡咯烷酮(NMP)和N,N-二甲基甲酰胺( DMF)。通过真空过滤通过再分散过程制备去离子水(DW)的GR分散体。系统的导热率(TC)测量在DW中的制备GR分散体上分别进行,温度的上升温度范围为25至60℃。以拉曼光谱的D和G频段(I_D / I_G)的强度比鉴定出exfoliated GR样品的缺陷。对于较高的离心速度(RPM),发现I_D / I_G的超声值的固定时间很高。对于两种溶剂感知这种现象。然而,NMP(GR-NMP)中剥离GR的I_D / I_G的值低于DMF(GR-DMF)的GR的值。对于GR-NMP和GR-DMF,找到500 rpm的I_D / I_G的最低值分别为0.697和0.879。对GR分散的DW纳米流体的Tc评估了exfoliated GR缺陷的效果。在60℃下,获得DW中的GR-NMP分散体的Tc 1.146 W / M-K对于0.697(500rpm)和0.935W / m-K的I_D / I_G为0.916(4000rpm)。类似地,对于DW中的GR-DMF分散也是显而易见的。

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