4.8 Article

Aluminum Nanocubes Have Sharp Corners

期刊

ACS NANO
卷 13, 期 8, 页码 9682-9691

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acsnano.9b05277

关键词

shape control; plasmonics; field-enhancement; {100} faceted; nanotechnology

资金

  1. Army Research Office [MURI W911NF-12-1 0407]
  2. Air Force Office of Scientific Research Multidisciplinary Research Program of the University Research Initiative [MURI FA9550-15-1-0022]
  3. Defense Threat Reduction Agency [HDTRA1-16-1-0042]
  4. National Institute of Health [NS094535]
  5. Welch Foundation [C-1220, C-1222]
  6. Department of Defense (DoD) through the National Defense Science and Engineering Graduate Fellowship (NDSEG) Program
  7. National Science Foundation [1450681]

向作者/读者索取更多资源

Of the many plasmonic nanoparticle geometries that have been synthesized, nanocubes have been of particular interest for creating nanocavities, facilitating plasmon coupling, and enhancing phenomena dependent upon local electromagnetic fields. Here we report the straightforward colloidal synthesis of single-crystalline {100} terminated Al nanocubes by decomposing AlH3 with Tebbe's reagent in tetrahydrofuran. The size and shape of the Al nanocubes is controlled by the reaction time and the ratio of AlH3 to Tebbe's reagent, which, together with reaction temperature, establish kinetic control over Al nanocube growth. Al nanocubes possess strong localized field enhancements at their sharp corners and resonances highly amenable to coupling with metallic substrates. Their native oxide surface renders them extremely air stable. Chemically synthesized Al nanocubes provide an earth-abundant alternative to noble metal nanocubes for plasmonics and nanophotonics applications.

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