Concentration Indicator Kit Based on Dandelion Propagation‐Inspired SERS Strategy

G Guoqian Li (School of Life Science and Technology Xidian University Xi'an Shaanxi 710126 China) L Langlang Yi (School of Life Science and Technology Xidian University Xi'an Shaanxi 710126 China) S Shiya Zhang (School of Mathematics and Physics Science and Engineering Hebei University of Engineering Handan Hebei 056038 China) Q Qin Song M Minghui Liang (School of Life Science and Technology Xidian University Xi'an Shaanxi 710126 China) Z Zhihui Guan (School of Life Science and Technology Xidian University Xi'an Shaanxi 710126 China) Y Yao Zhang Y Yuan Zhuang (Department of Chemistry) B Bo Hou (School of Chemistry and Molecular Engineering) X Xinyuan Wang X Xiaoyao Wu (School of Mathematics and Physics Science and Engineering Hebei University of Engineering Handan Hebei 056038 China) P Pengju Yin (School of Mathematics and Physics Science and Engineering Hebei University of Engineering Handan Hebei 056038 China) K Klyuyev Dmitriy (Institute of Life Sciences Karaganda Medical University Karaganda 100008 Kazakhstan) J Jiang Yang B Bo Hu J Jie Tian

Abstract

Abstract Surface‐enhanced Raman scattering (SERS) technology has been extensively employed for the detection of liquid samples in the biomedical field due to high sensitivity and non‐invasive characteristics. However, quantitative SERS detection is hindered by sophisticated instrumentation and complex calibration procedures, while qualitative analyses often provide insufficient concentration information for clinical diagnosis. Herein, a concentration indicator kit based on dandelion propagation‐inspired SERS strategy is developed for the semi‐quantitative detection of drug residues in urine. This strategy achieves significant signal enhancement through the synergistic effects of optimized hotspot construction and molecular adsorption, resulting in an analytical enhancement factor of 2.503 × 10⁵, which is 4143 times greater than that of silver nanoparticles. An innovative phenomenon termed the “concentration indicator” is discovered, wherein the SERS signal is dramatically enhanced at specific indicated concentrations while remaining weak at adjacent concentrations. The practical utility of this kit is validated through the detection of 2‐mercaptobenzothiazole in urine samples. The kit exhibits excellent performance in semi‐quantitative detection of standard solutions and simulated samples at high, indicated, and low concentrations. The concentration indicator opens new avenues for the development of simplified and reliable SERS‐based detection, offering a promising platform for bedside testing in medical diagnostics.

Article Details

Volume / Issue Vol. 37, Issue 34
Published August 01, 2025
ISSN 0935-9648
Publisher Unknown Publisher

Journal Info

Advanced Materials

Unknown Publisher

ISSN: 0935-9648 Physical Sciences

Authors (16)

G

Guoqian Li

School of Life Science and Technology Xidian University Xi'an Shaanxi 710126 China

L

Langlang Yi

School of Life Science and Technology Xidian University Xi'an Shaanxi 710126 China

S

Shiya Zhang

School of Mathematics and Physics Science and Engineering Hebei University of Engineering Handan Hebei 056038 China

Q

Qin Song

M

Minghui Liang

School of Life Science and Technology Xidian University Xi'an Shaanxi 710126 China

Z

Zhihui Guan

School of Life Science and Technology Xidian University Xi'an Shaanxi 710126 China

Y

Yao Zhang

Y

Yuan Zhuang

Department of Chemistry

B

Bo Hou

School of Chemistry and Molecular Engineering

X

Xinyuan Wang

X

Xiaoyao Wu

School of Mathematics and Physics Science and Engineering Hebei University of Engineering Handan Hebei 056038 China

P

Pengju Yin

School of Mathematics and Physics Science and Engineering Hebei University of Engineering Handan Hebei 056038 China

K

Klyuyev Dmitriy

Institute of Life Sciences Karaganda Medical University Karaganda 100008 Kazakhstan

J

Jiang Yang

B

Bo Hu

J

Jie Tian