Clark Benjamin D, Lou Minhan, Nordlander Peter, Halas Naomi J
Nano Lett. 2020 Sep 9;20(9):6644-6650. doi: 10.1021/acs.nanolett.0c02466. Epub 2020 Aug 10.
Plasmonic nanowires (NWs) have generated great interest in their applications in nanophotonics and nanotechnology. Here we report the synthesis of Al nanocrystals (NCs) with controlled morphologies that range from nanospheres to branched NW and NW bundles. This is accomplished by catalyzing the pyrolysis of triisobutyl aluminum (TIBA) with Tebbe's reagent, a titanium(III) catalyst with two cyclopentadienyl ligands. The ratio of TIBA to Tebbe's reagent is critical in determining the morphology of the resulting Al NC. The branched Al NWs grow in their ⟨100⟩ directions and are formed by oriented attachment of isotropic Al NCs on their {100} facets. Branched NWs are strongly absorptive from the UV to the mid-IR, with longitudinal dipolar, higher-order, and transverse plasmons, all contributing to their broadband response. This rapid Al NW synthesis enables the expanded use of Al for plasmonic and nanophotonic applications in the ultraviolet, visible, and infrared regions of the spectrum.
等离子体纳米线(NWs)在纳米光子学和纳米技术中的应用引起了人们极大的兴趣。在此,我们报道了具有可控形态的铝纳米晶体(NCs)的合成,其形态范围从纳米球到分支纳米线和纳米线束。这是通过用特贝试剂(一种带有两个环戊二烯基配体的三价钛催化剂)催化三异丁基铝(TIBA)的热解来实现的。TIBA与特贝试剂的比例对于确定所得铝纳米晶体的形态至关重要。分支铝纳米线沿其〈100〉方向生长,由各向同性铝纳米晶体在其{100}晶面上的定向附着形成。分支纳米线从紫外到中红外都具有很强的吸收性,纵向偶极、高阶和横向等离子体都对其宽带响应有贡献。这种快速的铝纳米线合成使得铝在光谱的紫外、可见和红外区域的等离子体和纳米光子学应用中得到更广泛的应用。