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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Controllable morphologies and electrochemical properties of graphitizing MCMB-based hybrids with nanostructure via a simple chemical vapor deposition method
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Controllable morphologies and electrochemical properties of graphitizing MCMB-based hybrids with nanostructure via a simple chemical vapor deposition method

机译:通过简单的化学气相沉积法将基于MCMB的杂交基的可控形态和电化学性能

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摘要

The graphitizing mesocarbon microbeads (g-MCMB) based nanostructure hybrids are prepared by a simple chemical vapor deposition method. The growth temperature and the flow ratio of H-2 to C2H2 (r) are the key parameters of controlling the morphologies of the hybrids. When r is 4, many CNTs mixed with carbon fibers grow on g-MCMB surfaces at 700 degrees C. However, there are almost no CNTs to be observed at 750 degrees C and 800 degrees C. In addition, the specific surface area of as-prepared hybrids is a little higher than that of g-MCMB, and the specific capacitance is much higher than the latter. The sample of g-MCMB-NS-4-700 exhibits the highest specific capacitance (303 F.g(-1) at the current density of 0.5 A g(-1)), which is approximately 1.46 folds of g-MCMB. Moreover, the prepared hybrids have an excellent cycling stability and the specific capacitance retention is above 90% after 500 cycles. (C) 2017 Elsevier B.V. All rights reserved.
机译:通过简单的化学气相沉积方法制备基于石墨碳微珠(G-MCMB)的纳米结构杂种。 H-2至C2H2(R)的生长温度和流量比是控制杂种的形态的关键参数。 当R为4时,与碳纤维混合的许多CNT在700℃下在G-MCMB表面上生长。然而,在750℃和800℃下几乎没有CNT被观察到。另外,特定表面积 - 预备的混合动力器略高于G-MCMB,并且比电容远高于后者。 G-MCMB-NS-4-700的样品在电流密度为0.5Ag(-1))的最高特定电容(303 f.g(-1),其为G-MCMB的约1.46倍。 此外,制备的杂交种具有优异的循环稳定性,500次循环后,特定的电容保持高于90%。 (c)2017年Elsevier B.V.保留所有权利。

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