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Stepwise Ligand-induced Self-assembly for Facile Fabrication of Nanodiamond-Gold Nanoparticle Dimers via Noncovalent Biotin-Streptavidin Interactions

  • Miu Shan Chan
  • , Renate Landig
  • , Joonhee Choi
  • , Hengyun Zhou
  • , Xing Liao
  • , Mikhail D. Lukin
  • , Hongkun Park
  • , Pik Kwan Lo*
  • *Corresponding author for this work

Research output: Journal Publications and ReviewsRGC 21 - Publication in refereed journalpeer-review

Abstract

Nanodiamond-gold nanoparticle (ND-AuNP) dimers constitute a potent tool for controlled thermal heating of biological systems on the nanoscale, by combining a local light-induced heat source with a sensitive local thermometer. Unfortunately, previous solution-based strategies to build ND-AuNP conjugates resulted in large nanoclusters or a broad population of multimers with limited separation efficiency. Here, we describe a new strategy to synthesize discrete ND-AuNP dimers via the synthesis of biotin-labeled DNA-AuNPs through thiol chemistry and its immobilization onto the magnetic bead (MB) surface, followed by reacting with streptavidin-labeled NDs. The dimers can be easily released from MB via a strand displacement reaction and separated magnetically. Our method is facile, convenient, and scalable, ensuring high-throughput formation of very stable dimer structures. This ligand-induced self-assembly approach enables the preparation of a wide variety of dimers of designated sizes and compositions, thus opening up the possibility that they can be deployed in many biological actuation and sensing applications.
Original languageEnglish
Pages (from-to)2020-2026
JournalNano Letters
Volume19
Issue number3
Online published19 Feb 2019
DOIs
Publication statusPublished - 13 Mar 2019

Research Keywords

  • biotin-streptavidin interactions
  • dual-functional
  • gold nanoparticle
  • nanodiamond
  • particle dimers

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