Gil Raúl A, Pacheco Pablo H, Cerutti Soledad, Martinez Luis D
Área de Química Analítica, Facultad de Química Bioquímica y Farmacia, Universidad Nacional de San Luis, Ciudad de San Luis 5700, Argentina; Instituto de Química de San Luis, INQUISAL, Centro Científico-Tecnológico de San Luis (CCT-San Luis), Consejo Nacional de Investigaciones Científicas y Universidad Nacional de San Luis, Ciudad de San Luis 5700, Argentina.
Área de Química Analítica, Facultad de Química Bioquímica y Farmacia, Universidad Nacional de San Luis, Ciudad de San Luis 5700, Argentina; Instituto de Química de San Luis, INQUISAL, Centro Científico-Tecnológico de San Luis (CCT-San Luis), Consejo Nacional de Investigaciones Científicas y Universidad Nacional de San Luis, Ciudad de San Luis 5700, Argentina.
Anal Chim Acta. 2015 May 22;875:7-21. doi: 10.1016/j.aca.2014.12.040. Epub 2014 Dec 30.
We review recent progress in preconcentration strategies associated to vapor generation techniques coupled to atomic spectrometric (VGT-AS) for specific chemical species detection. This discussion focuses on the central role of different preconcentration approaches, both before and after VG process. The former was based on the classical solid phase and liquid-liquid extraction procedures which, aided by automation and miniaturization strategies, have strengthened the role of VGT-AS in several research fields including environmental, clinical, and others. We then examine some of the new vapor trapping strategies (atom-trapping, hydride trapping, cryotrapping) that entail improvements in selectivity through interference elimination, but also they allow reaching ultra-low detection limits for a large number of chemical species generated in conventional VG systems, including complete separation of several species of the same element. This review covers more than 100 bibliographic references from 2009 up to date, found in SCOPUS database and in individual searches in specific journals. We finally conclude by giving some outlook on future directions of this field.
我们综述了与蒸气发生技术联用原子光谱法(VGT-AS)用于特定化学物种检测的预富集策略的最新进展。本讨论聚焦于不同预富集方法在蒸气发生(VG)过程之前和之后所起的核心作用。前者基于经典的固相和液-液萃取程序,在自动化和小型化策略的辅助下,强化了VGT-AS在包括环境、临床等多个研究领域中的作用。接着,我们考察了一些新的蒸气捕集策略(原子捕集、氢化物捕集、低温捕集),这些策略不仅通过消除干扰提高了选择性,而且还能实现对传统VG系统中产生的大量化学物种的超低检测限,包括同一元素的几种物种的完全分离。本综述涵盖了2009年至今在SCOPUS数据库以及在特定期刊的单独搜索中找到的100多篇参考文献。最后,我们对该领域的未来发展方向给出了一些展望。