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蒋欣亚博士


来源:本站原创 作者:佚名 日期:2021-03-30 访问次数:3825


蒋欣亚,女,中共党员,讲师,理学博士。

研究兴趣为基于电致化学发光的生物传感器研究。包括材料合成、生物传感器构建和分析方法研究。目前以第一作者在《Analytical Chemistry》《Biosensors and Bioelectronics》和《Chemical Communications》等学术期刊上发表SCI论文10篇,并主持国家自然科学青年基金1项、中国博士后科学基金面上项目1项、长江师范学院博士后项目和人才引进项目1项,重庆市研究生科研创新项目1项。

承担本科生《无机及分析化学》、《无机及分析化学实验》、《应用写作》等课程。

 

联系邮箱1023496341@qq.com

 

学习及工作经历

2008.09-2012.06,西南大学化学与化工学院,理学学士;

2012.09-2015.06,西南大学化学化工学院,无机化学硕士;

2015.09-2018.06,西南大学化学化工学院,分析化学博士;

2018.06-2020.07,长江师范学院-西南大学联合培养博士后;

2020.07-至今,长江师范学院化学化工学院任教。

 

 

主持的主要科研项目(不超过20项)

1)主持国家自然科学青年基金项目基于新型MXenes量子点和加速DNA反应放大策略的灵敏电致化学发光micr oRNA生物传感器的研究” (No. 21904013), 2020.01—2022.12

2)主持中国博士后科学基金面上项目“加速DNA反应放大策略的电致化学发光生物传感器研究(No. 2019M653817XB), 2019.05—2020.5

3)主持长江师范学院博士后启动项目“构建灵敏的电致化学发光生物传感器用于细胞”(No. 011160032),2018.07—2020.7

4)主持长江师范学院高层次人才科研启动项目,“基于DNA水凝胶放大策略的电致化学发光生物传感器研究”No. 0107301182021年。

 

代表性论文、专利、专著、奖励(不超过20篇):

1Xinya Jiang, Huijun Wang, Yaqin Chai, Wenbing Shi*, and Ruo Yuan*. High-efficiency CNNS@NH2-MIL(Fe) electrochemiluminescence emitters coupled with Ti3C2 nanosheets as a matrix for a highly sensitive cardiac troponin I assay. Analytical Chemistry, 2020, 92, 8992–9000.

2Xinya Jiang, Huijun Wang, Yaqin Chai, Hang Li, Wenbing Shi*, and Ruo Yuan*. DNA cascade reaction with high-efficiency target conversion for ultrasensitive electrochemiluminescence microRNA detection. Analytical Chemistry, 2019, 91, 10258–10265.

3Xinya Jiang, Huijun Wang, Ruo Yuan*, and Yaqin Chai*. Functional three-dimensional porous conductive polymer hydrogels for sensitive electrochemiluminescence in situ detection of H2O2 released from live Cells. Analytical Chemistry, 2018, 90, 8462–8469.

4Xinya Jiang, Haijun Wang, Huijun Wang, Ying Zhuo, Ruo Yuan*, and Yaqin Chai*. Electrochemiluminescence biosensor based on 3D DNA nanomachine signal probe powered by protein-aptamer binding complex for ultrasensitive Mucin 1 detection, Analytical Chemistry, 2017, 89, 4280-4286.

5Xinya Jiang, Huijun Wang, Haijun Wang, Ruo Yuan*, and Yaqin Chai*. Signal-switchable electrochemiluminescence system coupled with target recycling amplification strategy for sensitive mercury ion and mucin 1 assay. Analytical Chemistry, 2016, 88, 9243-9250.

6Xinya Jiang, Zili Wang, Haijun Wang, Ying Zhuo, Ruo Yuan*, and Yaqin Chai*. A novel metal-organic framework loaded with abundant N-(aminobutyl)-N-(ethylisoluminol) as a high-efficiency electrochemiluminescence indicator for sensitive detection of mucin1 on cancer cells. Chemical Communications, 2017, 53, 9705.

7Xinya Jiang, Huijun Wang, Haijun Wang, Ying Zhuo, Ruo Yuan*, and Yaqin Chai*. Self-enhanced N-(aminobutyl)-N-(ethylisoluminol) derivative-based electrochemiluminescence immunosensor for sensitive laminin detection using PdIr cubes as a mimic peroxidase. Nanoscale, 2016, 8, 8017-8025.

8Xinya Jiang, Haijun Wang, Ruo Yuan*, and Yaqin Chai*. Sensitive electrochemiluminescence detection for CA15-3 based on immobilizing luminol on dendrimer functionalized ZnO nanorods. Biosensors and Bioelectronics, 2015, 63, 33-38.

9Xinya Jiang, Yaqin Chai*, Haijun Wang, and Ruo Yuan*. Electrochemiluminescence of luminol enhanced by the synergetic catalysis of hemin and silver nanoparticles for sensitive protein detection. Biosensors and Bioelectronics, 2014, 54, 20-26.

10Xinya Jiang, Yaqin Chai*, Ruo Yuan*, Yaling Cao, Yingfeng Chen, Haijun Wang Xianxue Gan. An ultrasensitive luminol cathodic electrochemiluminescence immunosensor based on glucose oxidase and nanocomposites: Graphenecarbon nanotubes and gold-platinum alloy. Analytica Chimica Acta,2013, 783, 49-55.


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