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Dispersion Stability of TiO2-H2O Nanofluids Containing Mixed Nanotubes and Nanosheets

机译:含有混合纳米管和纳米晶体的TiO2-H2O纳米流体的分散稳定性

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Titanium dioxide nanotubes (TiNTs) and nanosheets (TiNSs) were synthesized according to the hydrothermal synthesis method. TiO2-H2O binary nanofluids were prepared by dispersing certain amount of both TiNTs and TiNSs in deionized water. Stabilities of nanofluids of different total concentrations were observed visually 1 hour later after preparation to classify stable and unstable nanofluids among nanofluids containing different ratios of TiNTs and TiNSs. Sedimentation heights variations with time were measured to indicate sedimentation velocities of nanoparticles of nanofluids of different concentrations as well. The preliminary results revealed that binary nanofluids stabilities could be improved effectively when concentration ratios of TiNTs to TiNSs are at suitable range compared with TiNTs or TiNSs alone, otherwise stabilities were deteriorated seriously. We consider the phenomenon is possibly concerned with electrostatic repulsion and depletion interactions in binary nanofluids.
机译:根据水热合成方法合成二氧化钛纳米管(色调)和纳米片(罐子)。 通过在去离子水中分散一定量的两种色调和罐来制备TiO2-H 2 O二元纳米流体。 在视觉上1小时后观察到不同总浓度的纳米流体的稳定性在制备后,在含有不同色调和罐子的不同比例的纳米流体中进行稳定和不稳定的纳米流体。 测量沉淀高度随时间的变化,表示不同浓度的纳米流体纳米颗粒的沉降速度。 初步结果表明,当与单独的色调或单独的罐子的色调浓度比在合适的范围内时,可以有效地提高二元纳米流体稳定性,但是,否则稳定性严重恶化。 我们认为这种现象可能涉及二元纳米流体中的静电排斥和耗尽相互作用。

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