Journal
SENSORS
Volume 23, Issue 22, Pages -Publisher
MDPI
DOI: 10.3390/s23229229
Keywords
DNA strands; DNA nanostructures; gold nanoparticle; plasmonic; sensing
Ask authors/readers for more resources
This review focuses on the progress in DNA-mediated assembly of gold nanoparticles (Au NPs) and their applications in sensing over the past five years. The strategies for orderly organization of Au NPs with DNA are highlighted, followed by a description of DNA-based assembly of Au NPs for sensing applications and representative research. The advantages of DNA nanotechnology in assembling complex Au NPs and the challenges and limitations in constructing complex gold nanoparticle assembly structures with tailored functionalities are summarized.
Gold nanoparticles (Au NPs) have become one of the building blocks for superior assembly and device fabrication due to the intrinsic, tunable physical properties of nanoparticles. With the development of DNA nanotechnology, gold nanoparticles are organized in a highly precise and controllable way under the mediation of DNA, achieving programmability and specificity unmatched by other ligands. The successful construction of abundant gold nanoparticle assembly structures has also given rise to the fabrication of a wide range of sensors, which has greatly contributed to the development of the sensing field. In this review, we focus on the progress in the DNA-mediated assembly of Au NPs and their application in sensing in the past five years. Firstly, we highlight the strategies used for the orderly organization of Au NPs with DNA. Then, we describe the DNA-based assembly of Au NPs for sensing applications and representative research therein. Finally, we summarize the advantages of DNA nanotechnology in assembling complex Au NPs and outline the challenges and limitations in constructing complex gold nanoparticle assembly structures with tailored functionalities.
Authors
I am an author on this paper
Click your name to claim this paper and add it to your profile.
Reviews
Recommended
No Data Available