0009-5893
1.2
否
不在预警名单内
否
Q4区
1968
Monthly
化学
GERMANY
Springer Berlin Heidelberg
SCIE,Scopus
103
25.75
-
Separation sciences, in all their various forms such as chromatography, field-flow fractionation, and electrophoresis, provide some of the most powerful techniques in analytical chemistry and are applied within a number of important application areas, including archaeology, biotechnology, clinical, environmental, food, medical, petroleum, pharmaceutical, polymer and biopolymer research. Beyond serving analytical purposes, separation techniques are also used for preparative and process-scale applications. The scope and power of separation sciences is significantly extended by combination with spectroscopic detection methods (e.g., laser-based approaches, nuclear-magnetic resonance, Raman, chemiluminescence) and particularly, mass spectrometry, to create hyphenated techniques. In addition to exciting new developments in chromatography, such as ultra high-pressure systems, multidimensional separations, and high-temperature approaches, there have also been great advances in hybrid methods combining chromatography and electro-based separations, especially on the micro- and nanoscale. Integrated biological procedures (e.g., enzymatic, immunological, receptor-based assays) can also be part of the overall analytical process.
各种形式的分离科学,如色谱、场流分馏和电泳,提供了分析化学中一些最强大的技术,并应用于许多重要的应用领域,包括考古学、生物技术、临床、环境、食品、医学、石油、制药、聚合物和生物聚合物研究。除了用于分析目的,分离技术还用于制备和过程规模的应用。分离科学的范围和能力通过与光谱检测方法(例如,基于激光的方法、核磁共振、拉曼、化学发光),特别是质谱法,以创建联用技术。除了在色谱方面令人兴奋的新发展,如超高压系统、多维分离和高温方法,在结合色谱和基于电的分离的混合方法方面也取得了巨大进展,特别是在微米和纳米尺度上。综合生物学程序(例如,酶、免疫学、基于受体的测定)也可以是整个分析过程的一部分。
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