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Macroscopic Graphene Fibers Directly Assembled from CVD-Grown Fiber-Shaped Hollow Graphene Tubes

机译:由CVD生长的纤维状空心石墨烯管直接组装而成的宏观石墨烯纤维

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摘要

Using a copper wire as the substrate for the CVD growth of a hollow multilayer graphene tube, we prepared a macroscopic porous graphene fiber by removing the copper in an aqueous mixture solution of iron chloride (FeCl3, 1M) and hydrochloric acid (HCl, 3M) and continuously drawing the newly released graphene tube out of the liquid. The length of the macroscopic graphene fiber thus produced is determined mainly by the length of the copper wire used. The resultant macroscopic graphene fiber with the integrated graphene structure exhibited a high electrical conductivity (127.3 Scm(-1)) and good flexibility over thousands bending cycles, showing great promise as flexible electrodes for wearable optoelectronics and energy devices-exemplified by its use as a flexible conductive wire for lighting a LED and a cathode in a fiber-shaped dye-sensitized solar cell (DSSC) with one of the highest energy conversion efficiencies (3.25%) among fiber-shaped DSSCs.
机译:使用铜线作为中空多层石墨烯管CVD生长的基材,我们通过除去氯化铁(FeCl3,1M)和盐酸(HCl,3M)的水溶液中的铜来制备宏观多孔石墨烯纤维。并不断地将新释放的石墨烯管从液体中抽出。由此制得的宏观石墨烯纤维的长度主要由所用铜线的长度决定。所得的具有集成石墨烯结构的宏观石墨烯纤维在数千个弯曲循环中均显示出高电导率(127.3 Scm(-​​1))和良好的柔韧性,显示出作为可穿戴光电子和能源设备的柔性电极的广阔前景-以其作为可穿戴式光电器件的示例柔性导线,用于在纤维状染料敏化太阳能电池(DSSC)中点亮LED和阴极,是纤维状DSSC中能量转换效率最高的一种(3.25%)。

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