Enhancement of Sensitivity for Retroreflection‐Based Biosensor by Controlling Polymer Brush on Janus Particles

Author:

Xu Yangyang1,Choi Sunjoo23,Yoo Tae Hyeon23ORCID,Lee Kyung Jin1ORCID

Affiliation:

1. Department of Chemical Engineering and Applied Chemistry College of Engineering Chungnam National University Daejeon 34134 Republic of Korea

2. Department of Molecular Science and Technology Ajou University Suwon 16499 Republic of Korea

3. Department of Applied Chemistry and Biological Engineering Ajou University Suwon 16499 Republic of Korea

Abstract

AbstractAmong the methods for onsite detection of specific biomolecules, the use of retroreflective Janus particles (RJPs) is a simple and efficient method for biophotonic probes to detect biotarget molecules with spatioselectivity, which can make the RJPs align toward light sources after capturing the target biomolecules, enhancing retroreflection. Because RJP has two distinct regions with different properties, specific reagents can be easily functionalized through chemical reactions between the functional groups and biotarget molecules. The number of functional groups on RJP will be the critical parameter for efficiency of sensing ability. Here, clickable (azide) polymer brush is introduced on surface of RJP via different surface polymerization methods (grafting to and grafting from method). Azide groups allow for the easy modification of dibenzocyclooctyne‐linked biomolecules onto silica particles through click chemistry. RJPs are prepared with different quantities of azide functional groups on their surfaces via solvent volatilization method and metal deposition. Using a retroreflective immunosensing system, sensitive detection of target biomolecules is performed.

Funder

Agency for Defense Development

Defense Acquisition Program Administration

Publisher

Wiley

Subject

Materials Chemistry,Organic Chemistry,Polymers and Plastics,Physical and Theoretical Chemistry,Condensed Matter Physics

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