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Si substrate controlled in-plane synthesis of self-assembled nanostructures catalyzed by Au nanoparticles

机译:Au纳米颗粒催化的Si衬底自控纳米结构的面内合成

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Self-assembled in-plane fabrication of Cu3Si and Mg2SiO4 nanostructures were achieved on Si substrates by a simple vapor transport method. The morphologies of the as fabricated structures were controlled by the surface orientation of the substrates, i.e. Cu3Si nanowires (NWs), nanosquares (NSs), and nanotriangles (NTs) were synthesized on Si (110), (100), and (111) substrates, respectively. In the case of Mg2SiO4, NWs with specific growth directions were observed. All the sides of the NTs & NSs and the growth directions of the NWs are along Si <110>, indicating that the symmetries of nanostructure growth break into 2, 4, and 6 folds on Si (110), (100), and (111). Au nanoparticles (NPs) were used as the catalyst and played critical roles by absorbing metal vapor and breaking the barrier of native oxide layer on Si substrates. The positions of the as fabricated nanostructures were controlled by the Au NPs and the growth of Mg2SiO4 NWs can work as a mechanism for transporting Au NPs along specific directions.
机译:通过简单的气相传输方法,在Si衬底上实现了Cu 3 Si和Mg 2 SiO 4 纳米结构的自组装面内制备。通过基板的表面取向控制所制造结构的形态,即在Si(110)上合成Cu 3 Si纳米线(NWs),纳米正方形(NSs)和纳米三角形(NTs)。分别为(100)和(111)基板。在Mg 2 SiO 4 的情况下,观察到具有特定生长方向的NW。 NTs和NSs的所有侧面以及NWs的生长方向都沿着Si <110>,这表明纳米结构生长的对称性在Si(110),(100)和( 111)。金纳米颗粒(NPs)用作催化剂,并通过吸收金属蒸气和打破Si衬底上的天然氧化物层的势垒发挥了关键作用。制备的纳米结构的位置受金纳米颗粒的控制,Mg 2 SiO 4 NWs的生长可以作为沿特定方向传输金纳米颗粒的机制。

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