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One-dimensional shape-controlled preparation of porous Cu2O nano-whiskers by using CTAB as a template

机译:以CTAB为模板一维可控形貌制备多孔Cu2O纳米晶须

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One-dimensional (1D) cuprite (CU2O) nano-whiskers with diameter of 15-30 nm are obtained from liquid deposition method at 25 degreesC by adding a surfactant, cetyl trimethyl ammonium bromide (CTAB), as a template. TEM and HRTEM show that the nano-whiskers exhibit a well-crystallized 1D structure of more than 200 nm in length, and confirms that the nano-whiskers grow mainly along the < 111 > direction. Moreover, there are many pores in the nano-whiskers, which is beneficial for the photocatalysis under visible light. When polyethylene glycol (PEG), glucose and sodium dodecylbenzenesulfonate (SIDS) are used as templates, 1D structures cannot be obtained. According to the TEM images of the compound obtained at different stages during the growth of the Cu2O nano-whiskers, it is found that the role of CTAB is to interact with tiny Cu(OH)(2), which can adsorb OH- and become negative charged, to disperse the tiny Cu(OH)(2) solid and to induce the growth of Cu2O along the 1D direction. Although CTAB is significant for the preparation of the 1D nanomaterials, ion character of the precursor (Cu(OH)(2) . OH- or Cu2+) is important as well since there is no nano-whiskers obtained with Cu2+ as the precursor. Moreover, the probable mechanism of the formation for the porous structure is discussed. (C) 2004 Elsevier Inc. All rights reserved.
机译:通过添加表面活性剂十六烷基三甲基溴化铵(CTAB)作为模板,在25℃下通过液相沉积法获得直径为15-30 nm的一维(1D)铜盐(CU2O)纳米晶须。 TEM和HRTEM表明,纳米晶须显示出良好结晶的一维结构,其长度大于200nm,并且证实了纳米晶须主要沿<111>方向生长。此外,纳米晶须中有许多孔,这对于可见光下的光催化是有利的。当使用聚乙二醇(PEG),葡萄糖和十二烷基苯磺酸钠(SIDS)作为模板时,无法获得一维结构。根据Cu2O纳米晶须生长过程中不同阶段获得的化合物的TEM图像,发现CTAB的作用是与微小的Cu(OH)(2)相互作用,Cu(OH)(2)可以吸附OH-并变成带负电,以分散微小的Cu(OH)(2)固体,并诱导Cu2O沿一维方向生长。尽管CTAB对于一维纳米材料的制备具有重要意义,但由于没有以Cu2 +为前体获得的纳米晶须,因此前体的离子特征(Cu(OH)(2)。OH-或Cu2 +)也很重要。此外,讨论了多孔结构形成的可能机理。 (C)2004 Elsevier Inc.保留所有权利。

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