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溶液中银纳米线的生长:一种环状五重孪晶晶体生长机制。

Growth of silver nanowires from solutions: a cyclic penta-twinned-crystal growth mechanism.

作者信息

Zhang Shu-Hong, Jiang Zhi-Yuan, Xie Zhao-Xiong, Xu Xin, Huang Rong-Bin, Zheng Lan-Sun

机构信息

State Key Laboratory of Physical Chemistry of Solid Surfaces and Department of Chemistry, Xiamen University, Xiamen 361005, China.

出版信息

J Phys Chem B. 2005 May 19;109(19):9416-21. doi: 10.1021/jp0441036.

Abstract

Silver nanowires are synthesized by simple reduction of the silver ions with reductants such as glucose, sodium citrate, and sodium hypophosphite, etc., in the absence of the so-called surfactants or capping reagents at the temperature from 80 to 200 degrees C. Regardless of the reductants, the nanowires prepared at a given temperature are uniform in diameters, ranging from 30 to 50 nm at 100 degrees C. Nanoparticles coexist with nanowires in the products with larger diameters (usually larger than 50 nm). We find that all the silver nanowires in the as-prepared products are of cyclic penta-twinned structure, where five crystallites bond by the {111} facets. We propose that the intrinsic factor of the cyclic penta-twinned structure, i.e., the angular mismatch of the five crystallites in forming a gapless rod, controls the size of the nanowires and guides the directional growth of the nanowires with {110} as the active facets. The nanoparticles in the products are aggregates of imperfect penta-twinned crystals, which inhibits them from growing into nanowires and results in larger size. From the structural information of the nanoparticles synthesized at room temperature, we propose that the formation of the cyclic penta-twinned structure is due to the stacking fault and the intrinsic equilibrium structures of the lower energy.

摘要

银纳米线是通过在80至200摄氏度的温度下,在不存在所谓表面活性剂或封端剂的情况下,用葡萄糖、柠檬酸钠和次磷酸钠等还原剂简单还原银离子而合成的。无论使用何种还原剂,在给定温度下制备的纳米线直径均匀,在100摄氏度时直径范围为30至50纳米。在直径较大(通常大于50纳米)的产物中,纳米颗粒与纳米线共存。我们发现,所制备产物中的所有银纳米线均具有环状五重孪晶结构,其中五个微晶通过{111}面结合。我们提出,环状五重孪晶结构的内在因素,即在形成无缝隙棒时五个微晶的角度失配,控制着纳米线的尺寸,并以{110}作为活性面引导纳米线的定向生长。产物中的纳米颗粒是不完全五重孪晶晶体的聚集体,这抑制了它们生长成纳米线并导致尺寸更大。从室温下合成的纳米颗粒的结构信息来看,我们认为环状五重孪晶结构的形成是由于堆垛层错和较低能量的内在平衡结构。

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