Two-Dimensional Nucleic Acid Brushes on Colloidal MXene Sheets

  • Lee, Jiyoung
  • Yoon, Jaeeun
  • Park, Ki Hong
  • Lee, Juyun
  • Hwang, Jin Hyun
  • ... Yun, Hongseok
  • 외 5명
Citations

WEB OF SCIENCE

0
Citations

SCOPUS

0

초록

DNA immobilization on nanoparticle surfaces enables programmable assembly, gene sensing, and intracellular delivery. However, dense, direct functionalization of atomically thin two-dimensional (2D) materials remains challenging due to their inert basal planes. In contrast, 2D transition metal carbides (MXenes) possess highly polar, chemically active surfaces terminated with −OH, −O–, and −F groups, offering a unique platform for biofunctionalization. Herein, we exploit MXene’s surface chemistry for robust DNA grafting via designing a bifunctional catechol- and azide-terminated ligand. The catechol moiety anchors strongly to the MXene surface, while the azide group enables strain-promoted cycloaddition with dibenzocyclooctyne-terminated DNA. The resulting 2D DNA brush exhibits a high grafting density, evidenced by sequence-controlled self-assembly of MXene flakes and heteroassembly with complementary Au nanoparticles. This work presents a simple, effective strategy for producing colloidal two-dimensional nucleic acid brushes, establishing a versatile platform for further exploration of such bioactive nanobrush structures in the fields of nanoscience and biotechnology.

키워드

MXeneSurface functionalizationSurface chemistryDNA conjugationTwo-dimensional materialSelf-assemblySURFACE FUNCTIONALIZATIONDNANANOPARTICLESNANOSHEETS
제목
Two-Dimensional Nucleic Acid Brushes on Colloidal MXene Sheets
저자
Lee, JiyoungYoon, JaeeunPark, Ki HongLee, JuyunHwang, Jin HyunNa, JongbeomKim, HojunKim, MijinKim, Seon JoonYun, HongseokOh, Taegon
DOI
10.1021/acs.nanolett.5c04642
발행일
2025-12
유형
Article; Early Access
저널명
Nano Letters
25
52
페이지
18016 ~ 18025