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Synthesis of uniform and size-controllable carbon nanospheres by a simple hydrothermal method and fabrication of carbon nanosphere super-hydrophobic surface

机译:通过简单的水热法合成均匀且尺寸可控的碳纳米球和制备碳纳米球超疏水表面

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A simple hydrothermal method was used to produce high yield, monodisperse and tightly controllable size of carbon nanospheres (CNSs) by adjusting the concentration of initial sucrose solution in a sealed autoclave at 170 degrees C for 8h. By changing the solution concentration from 0.5 to 0.1 mol l(-1), the sizes of carbon spheres (CS) were reduced from about 2500 to about 300 nm. Also by increasing the solution volume to the vessel volume ratio (V-s/V-v) from 5/6 to 11/13, the yield of CS was increased from 25% up to about 55% of initial raw materials. It was found that by post-annealing of the 300 nm CNSs at 435 degrees C for 30 min, their diameters were reduced to 100 nm. Moreover, annealing in air atmosphere had a noticeable influence on the surface functional groups and bonds of CNSs. In addition, CNSs were used to fabricate hydrophobic surfaces by coating their ethanolic colloidal solution on glass substrates. The measured contact angle (CA) of a water droplet was about 153 degrees, indicating that the CNSs thick layers were super-hydrophobic. The size dependence of CNSs on the different parameters has been discussed. (C) 2015 Elsevier B.V. All rights reserved.
机译:通过在170摄氏度的高压灭菌器中调节初始蔗糖溶液的浓度8小时,使用一种简单的水热方法来生产高产率,单分散且尺寸可控的碳纳米球。通过将溶液浓度从0.5 mol改变为0.1 mol l(-1),碳球(CS)的尺寸从2500减少到300 nm。同样,通过将溶液体积与容器体积之比(V-s / V-v)从5/6增加到11/13,CS的收率从初始原料的25%增加到大约55%。发现通过在435℃下将300nm的CNS后退火30分钟,它们的直径减小到100nm。而且,在大气中退火对CNS的表面官能团和键具有显着影响。另外,CNS被用于通过在玻璃基板上涂覆其乙醇胶体溶液来制造疏水表面。所测得的水滴的接触角(CA)为约153度,表明CNSs的厚层是超疏水的。讨论了中枢神经系统对不同参数的大小依赖性。 (C)2015 Elsevier B.V.保留所有权利。

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