Correlating structural changes in thermoresponsive hydrogels to the optical response of embedded plasmonic nanoparticles

被引:3
|
作者
Zygadlo, Kamila [1 ]
Liu, Chung-Hao [2 ]
Bernardo, Emmanuel Reynoso [1 ]
Ai, Huayue [1 ]
Nieh, Mu-Ping [2 ,3 ]
Hanson, Lindsey A. [1 ]
机构
[1] Trinity Coll, Dept Chem, Hartford, CT 06106 USA
[2] Univ Connecticut, Inst Mat Sci, Polymer Program, Storrs, CT 06269 USA
[3] Univ Connecticut, Chem & Biomol Engn Dept, Storrs, CT 06269 USA
来源
NANOSCALE ADVANCES | 2023年 / 6卷 / 01期
基金
美国国家卫生研究院; 美国国家科学基金会;
关键词
VOLUME PHASE-TRANSITION; GOLD NANORODS; MICROGELS; SPECTROSCOPY; KINETICS; GROWTH; PH;
D O I
10.1039/d3na00758h
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Stimuli-responsive microgels, composed of small beads with soft, deformable polymer networks swollen through a combination of synthetic control over the polymer and its interaction with water, form a versatile platform for development of multifunctional and biocompatible sensors. The interfacial structural variation of such materials at a nanometer length scale is essential to their function, but not yet fully comprehended. Here, we take advantage of the plasmonic response of a gold nanorod embedded in a thermoresponsive microgel (AuNR@PNIPMAm) to monitor structural changes in the hydrogel directly near the nanorod surface. By direct comparison of the plasmon response against measurements of the hydrogel structure from dynamic light scattering and nuclear magnetic resonance, we find that the microgel shell of batch-polymerized AuNR@PNIPMAm exhibits a heterogeneous volume phase transition reflected by different onset temperatures for changes in the hydrodyanmic radius (RH) and plasmon resonance, respectively. The new approach of contrasting plasmonic response (a measure of local surface hydrogel structure) with RH and relaxation times paves a new path to gain valuable insight for the design of plasmonic sensors based on stimuli-responsive hydrogels. Hybrid sensors rely on correlation of the optical and structural response. Thermal response of AuNR-hydrogel nanocomposites is examined by DLS, optical spectroscopy and NMR, revealing differences in collapse between the composite core and surface.
引用
收藏
页码:146 / 154
页数:9
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