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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Aluminum borate nanowires from the pyrolysis of polyaminoborane precursors
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Aluminum borate nanowires from the pyrolysis of polyaminoborane precursors

机译:聚氨基硼烷前体的热解生成硼酸铝纳米线

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Polyaminoboranes [N(R) H-BH2](n) (1: R = H, 2: R = Me) were pyrolyzed on a range of substrates: silicon, metal foils (stainless steel, nickel, and rhodium), and sapphire wafers, as well as on Al2O3 and AlN powders. The pyrolysis of 2 on a Si-wafer resulted in porous nanostructures containing hexagonal-boron nitride (h-BN). In the case of 1 or H3N center dot BH3 as precursor, using rhodium foil as substrate afforded amorphous B and N-containing nanostructures, and polydisperse spherical nanoparticles, respectively. Switching the substrate to sapphire wafers, as well as to Al2O3 or AlN powders, resulted in formation of crystalline Al5BO9 nanostructures (nanowires, nanotubes, and nanoribbons). For sapphire wafers, the size of the resulting nanowires was influenced by modifying the surface defect density.
机译:聚氨基硼烷[N(R)H-BH2](n)(1:R = H,2:R = Me)在一系列衬底上热解:硅,金属箔(不锈钢,镍和铑)和蓝宝石晶片,以及Al2O3和AlN粉末。 2在硅晶片上的热解产生了包含六方氮化硼(h-BN)的多孔纳米结构。在以1或H3N中心点BH3为前驱体的情况下,使用铑箔作为基材,分别得到非晶态的含B和N的纳米结构以及多分散的球形纳米颗粒。将基板切换为蓝宝石晶片以及Al2O3或AlN粉末,会导致形成晶体Al5BO9纳米结构(纳米线,纳米管和纳米带)。对于蓝宝石晶片,通过改变表面缺陷密度来影响所得纳米线的尺寸。

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