
胡静 副研究员
通讯地址:成都市望江路29号四川大学分析测试中心220室
E-mail: hujing2019@scu.edu.cn
教育及工作经历:
2023.09-至今,四川大学分析测试中心,副研究员
2020.05-2023.09,四川大学分析测试中心,副研究员(专职科研)
2019.09-2020.05,四川大学分析测试中心,助理研究员
2015.09-2019.06,四川大学分析测试中心,环境科学专业,工学博士
2016.10-2017.10,National Research Council Canada,国家公派出国留学联合培养
2012.09-2015.06,四川大学化学学院,分析化学专业,理学硕士
主要研究领域:
无机质谱分析;原子光谱分析;环境分析与监测
承担科研项目:
国家自然科学基金面上项目(22476136),50万元,2025-2028
国家自然科学基金青年基金(22104098),30万元,2022-2024
四川省自然科学基金(2022NSFSC1214),10万元,2022-2023
代表性科研成果(发表论文、专利):
1.Chenxi Zhao, Lijie Du, Dike Jiang, Jing Hu*, Xiandeng Hou*. Regulating CRISPR/Cas12a trans-cleavage on the hairpin DNA-MBs nanointerface for enhanced multiplexed sensing application.Chem. Sci.2025, 16 (25), 11456-11463.
2.Xingyan Zou, Yuling Zhang, Jing Hu*, Xiandeng Hou*. Photochemical vapor generation of platinum: Mechanism and analytical application.Anal. Chem.2025, 97(33), 17931-17937.
3.Chenxi Zhao, Lijie Du,Jing Hu*, Xiandeng Hou*.Recombinase polymerase amplification and target-triggered CRISPR/Cas12a assay for sensitive and selective Hepatitis B virus DNA analysis based on lanthanide tagging and inductively coupled plasma mass spectrometric detection.Anal. Chem.2024, 96 (37), 15059-15065.
4.Jing Hu,Chenghui Li, Hanjiao Chen*, Xiandeng Hou*. Photochemical hydride generation in sulfite medium: Sample introduction into an inductively coupled plasma mass spectrometer for the determination of ultratrace inorganic arsenic.Anal. Chem.2023, 95 (28), 10498-10503.
5.Meng Zhang#,JingHu#,Qingsong Tang, Jiale Zhang, Xiaoming Jiang*, Xiandeng Hou*. Phosphonic acid-functionalized MIL-53(Al) as an efficient sorbent for trace rare earth elements preconcentration, storage and their determination by X-ray fluorescence spectrometry.Anal. Chem.2023, 95 (38), 14169-14174.
6.Meng Zhang, Qing Xiong, Chenghui Li,JingHu*,Xiandeng Hou. Classification and geographic origin discrimination of Chinese prickly ash using X-ray fluorescence and machine learning.LWT-Food Sci Technol.2023, 183, 114947.
7.Yafei Zhen, Tao Lin, Hanjiao Chen,Jing Hu*, Xiandeng Hou*. Vapor generation of rare-earth elements via reaction with tetrahydroborate: Chemical identities and mechanisms of formation.Anal. Chem.2022, 94 (44), 15176-15182.
8.Manlin Yang, Chenghui Li, Yunfei Tian, Lan Wu,Jing Hu*, Xiandeng Hou*. Dielectric barrier discharge-accelerated one-pot synthesis of sulfur quantum dots for fluorescent sensing of lead ions and l-cysteine.Chem. Commun.2022, 58 (62), 8614-8617.
9.Qing Yang, Hanjiao Chen,Jing Hu*, Ke Huang, Xiandeng Hou*. Simultaneous detection of ruthenium and osmium by photochemical vapor generation-inductively coupled plasma-mass spectrometry.Anal. Chem.2022, 94 (2), 593-599.
10.Manlu Wang, Juan He, Jin Luo,Jing Hu*, XiandengHou. Ultrasensitive determination and non-chromatographic speciation of inorganic arsenic in foods and water by photochemical vapor generation-ICPMS using CdS/MIL-100(Fe) as adsorbent and photocatalyst.Food. Chem.2022, 375, 131841.
11.Peixia Li#,Jing Hu#, Meng Zhang, Lin He,Xiandeng Hou*,Xiaoming Jiang*.Microdischarge in flame as a source-in-source for boosted excitation of optical emission of chromium.Anal. Chem.2022, 94 (21), 7683-7691.
12.Jing Hu,Chenghui Li, Yafei Zhen, Hanjiao Chen, Juan He*, Xiandeng Hou*. Current advances of chemical vapor generation in non-tetrahydroborate media for analytical atomic spectrometry.TrAC-Trends in Anal. Chem.2022, 155, 116677.
13.Jing Hu, Hanjiao Chen, Xiaoming Jiang*, Xiandeng Hou*. Photochemical vapor generation of halides in organic-acid-free media: Mechanism study and analysis of water samples.Anal. Chem.2021, 93 (32), 11151-11158.
14.Jing Hu, Hanjiao Chen, Xiandeng Hou*, Xiaoming Jiang*. Cobalt and copper synergistically enhanced photochemical vapor generation of molybdenum: possible mechanism and application in real sample analysis.Anal. Chem.2019, 91 (9), 5938-5944.
15.Jing Hu, Ralph E Sturgeon, Kenny Nadeau, Xiandeng Hou*, Chengbin Zheng, Lu Yang*. Copper ion assisted photochemical vapor generation of chlorine for its sensitive determination by sector field inductively coupled plasma mass spectrometry.Anal. Chem.2018, 90 (6), 4112-4118.