- 黃又舉 教授
- 杭州師范大學
- 網址: huangyouju.polymer.cn 訪問量:595734
相關鏈接
聯系方式
- 通信地址:浙江省杭州市余杭區倉前街道余杭塘路2318號勤園17號樓231房間
- 郵編:311121
- 電話:0571-28868883
- 傳真:0571-28867909
- Email:yjhuang@hznu.edu.cn
【Analytical Chemistry】Giant Gold Nanowire Vesicles Based Colorimetric and SERS Dual Mode Immunosensor for Ultrasensitive Detection of Vibrio Parahemolyticus
作者:Guo, Zhiyong; Jia, Yaru; Song, Xinxin ; Lu, Jing; Lu, Xuefei; Liu, Baoqing; Han, Jiaojiao; Youju Huang*, Jiawei Zhang, Tao Chen*
關鍵字:Giant Gold Nanowire Vesicles
論文來源:期刊
具體來源:Analytical Chemistry,2018,accpeted
發表時間:2018年
Conventional methods for the detection of Vibrio parahaemolyticus (VP) usually need tedious, labor-intensive processes, and have low sensitivity, which further limits their practical applications. Herein, we developed a simple and efficient colorimetry and surface enhanced Raman scattering (SERS) dual-mode immunosensor for sensitive detection of VP, by employing giant Au vesicles with anchored tiny gold nanowires (AuNW) as a smart probe. Due to the larger specific surface and special hollow structure of giant Au vesicles, silver staining would easily lead to vivid color change for colorimetric analysis and further amplify SERS signals. The t-test was further used to determine if two sets of data from colorimetry and SERS are significantly different from each other. The result shows that there was no significant difference between data from two methods. Two sets of data can mutually validate and avoid false positive and negative detection. The designed colorimetry-SERS dual-mode sensor would be very promising in various applications such as food safety inspection, personal healthcare and on-site environmental monitoring
關鍵字:Giant Gold Nanowire Vesicles
論文來源:期刊
具體來源:Analytical Chemistry,2018,accpeted
發表時間:2018年
Conventional methods for the detection of Vibrio parahaemolyticus (VP) usually need tedious, labor-intensive processes, and have low sensitivity, which further limits their practical applications. Herein, we developed a simple and efficient colorimetry and surface enhanced Raman scattering (SERS) dual-mode immunosensor for sensitive detection of VP, by employing giant Au vesicles with anchored tiny gold nanowires (AuNW) as a smart probe. Due to the larger specific surface and special hollow structure of giant Au vesicles, silver staining would easily lead to vivid color change for colorimetric analysis and further amplify SERS signals. The t-test was further used to determine if two sets of data from colorimetry and SERS are significantly different from each other. The result shows that there was no significant difference between data from two methods. Two sets of data can mutually validate and avoid false positive and negative detection. The designed colorimetry-SERS dual-mode sensor would be very promising in various applications such as food safety inspection, personal healthcare and on-site environmental monitoring