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September 9, 2009Nano Letters378 citations

Controlling Nanoparticles with Atomic Precision: The Case of Au144(SCH2CH2Ph)60

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HQHuifeng QianRJRongchao Jin

Key Points

  • To develop a simple, direct synthetic route for producing atomically precise, monodisperse Au144(SCH2CH2Ph)60 nanoparticles without requiring difficult postsynthetic size separation.
  • Synthesized Au144(SCH2CH2Ph)60 nanoparticles using a direct, facile two-step chemical preparation method.
  • Characterized the molecular formula and structural properties using electrospray mass spectrometry and optical absorption spectroscopy.
  • Achieved exclusive synthesis of monodisperse Au144(SCH2CH2Ph)60 nanoparticles, successfully bypassing tedious postsynthetic separation procedures.
  • Identified a stepwise, multiple-band absorption spectrum indicative of electron quantum confinement, contrasting with the ~520 nm surface plasmon resonance band characteristic of larger gold nanocrystals (>2 nm).
  • Demonstrated that the ultrasmall nanoparticles do not adopt the standard face-centered cubic crystal lattice present in bulk gold or larger nanocrystals.

Abstract

We report a facile, two-step synthetic method for preparing truly monodiserse Au(144)(SCH(2)CH(2)Ph)(60) nanoparticles with their formula determined by electrospray mass spectrometry in conjunction with other characterization. A remarkable advantage of our synthetic approach lies in that it solely produces Au(144)(SCH(2)CH(2)Ph)(60) nanoparticles, hence, eliminating nontrivial, postsynthetic steps of size separation, which has proven to be very difficult. This advantage makes the approach and the type of nanoparticles generated by it of broad utility for practical applications. Unlike their larger counterparts, Au nanocrystals (typically >2 nm) that are crystalline and show a prominent surface plasmon resonance band at approximately 520 nm (for spherical particles), the Au(144)(SCH(2)CH(2)Ph)(60) nanoparticles instead exhibit a stepwise, multiple-band absorption spectrum, indicating quantum confinement of electrons in the particle. In addition, these ultrasmall nanoparticles do not adopt face-centered cubic structure as in Au nanocrystals or bulk gold.

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Cite This Study

Qian et al. (2009) studied this question.

synapsesocial.com/papers/6a19f77c2f689499b5f6b5a9https://doi.org/10.1021/nl902300y
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