材料科学
表面等离子共振
光电子学
光子晶体光纤
灵敏度(控制系统)
背景(考古学)
光子晶体
谐振器
光子学
癌症检测
生物传感器
等离子体子
纳米技术
乳腺癌
沟槽(工程)
联轴节(管道)
光纤
纳米材料
探测理论
无线传感器网络
Q系数
分辨率(逻辑)
表面等离子体子
高分辨率
电阻抗
电子工程
波长
作者
Min Lu,Yan He,S. P. Xi,Pufan Zhong,Yu Zhang,He Tian,Yongmei Wang,Hanglin Lu,Junhui Hu,Jian Tang
出处
期刊:Sensors
[Multidisciplinary Digital Publishing Institute]
日期:2025-09-12
卷期号:25 (18): 5705-5705
被引量:2
摘要
Early detection of cancer remains a key challenge because current SPR-PCF sensors lack both sensitivity and robust light–analyte interaction. To overcome these limitations, this study proposed and validated an SPR biosensor utilizing MXene-functionalized PCF. By introducing a composite structure of MXene nanomaterials and Au, the detection performance of the sensor was significantly improved. The sensor adopts a circular air hole arrangement and double-groove morphology design and leverages MXene’s high conductivity and gold’s chemical stability to simultaneously enhance plasmonic coupling and biocompatibility. Through FEM-based structural optimization of the air hole diameter, Au layer thickness, and groove shape, the sensor exhibited outstanding refractive-index detection performance with a wavelength sensitivity of 11,072 nm/RIU, an impressive quality factor reaching 201.3 RIU−1, and a resolution as fine as 9.03 × 10−6 RIU. The simulation results demonstrated the capability of the sensor to discriminate six distinct cancer-cell types (cervical cancer HeLa, leukemia Jurkat, pheochromocytoma PC-12, triple-negative breast cancer MDA-MB-231, and breast cancer MCF-7) with high sensitivity and verify its ability to detect pan-cancer species. This study demonstrates an innovative approach for constructing a high-performance SPR sensing platform that has important application potential in the context of the early detection of multiple cancers.
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