一本道

张晓

发布时间:2025-06-13浏览次数:14



姓名:张晓

职称:讲师

专业:化学

所属二级学科:分析化学

研究方向:原子光谱

E-mail: [email protected]



 


近年来的主要研究工作:

生命体中金属形态分析的方法学及预处理仪器研制,利用色谱/元素质谱和3D打印技术,研究生物样品中金属及其形态的分析方法和预处理系统的搭建,实现包括金属组学和代谢组学在内的生命体中金属形态的迁移转换研究。

近年来承担的主要项目(五项):

近年来发表的代表性论文(十篇):

1.Zhang X., Jiang X.-Y., Zhao L., Chen S., Yu Y.-L., Wang J.-H. Urine self-sampling kit combined with automated preparation-sampler device for convenient and reliable analysis of arsenic metabolites by HPLC-ICPMS. Analytical Chemistry, 2024, 96, 1742–1749.

2.Zhang X., Jiang X.-Y., Chen S., Yu Y.-L., Wang J.-H. Dynamic stomach model-capillary electrophoresis-ICPMS for evaluation of release and transformation behaviors of arsenic species from microplastics during digestion. Analytical Chemistry, 2024, 96, 7155–7162.

3.Guo L., Zhang X., Zhao D.-M., Chen S., Zhang W.-X., Yu Y.-L., Wang J.-H. Portable photoacoustic analytical system combined with wearable hydrogel patch for pH monitoring in chronic wounds. Analytical Chemistry, 2024, 96, 11595−11602.

4.Zhang X., Jiang X.-Y., Chen S., Yu Y.-L., Wang J.-H. Facile lego-spinner pretreatment device for analysis of arsenic species in dried blood spots by ion chromatography-inductively coupled plasma-mass spectrometry. Analytical Chemistry, 2023, 95, 2375–2381.

5.Zhang X., Liu S., Wei X., Yu Y. L., Wang J.-H. A novel pretreatment device integrating magnetic-assisted dispersive extraction and ultrasonic spray separation for speciation analysis of arsenic in whole blood by ion chromatography-inductively coupled plasma-mass spectrometry. Analytical Chemistry, 2021, 93, 10577–10583.

6.Cai J.-Y., Zhang X., Wei Y.-J., Chen S., Yu Y.-L., Wang J.-H. A portable microplasma optical emission spectrometric device with online digestion function for field and sensitive determination of lead in biological samples. Analytical Chemistry, 2024, 96, 3733–3738.

7.Zhuang Y.-T., Zhang X., Wang D.-H., Yu Y.-L., Wang J.-H. Three-dimensional molybdenum disulfide/graphene hydrogel with tunable heterointerfaces for high selective Hg(II) scavenging. Journal of Colloid and Interface Science, 2018, 514, 715–722.