Webster Gregory K, Jensen James S, Diaz Angel R
Analytical Research & Development, Pfizer Global Research and Development, 2800 Plymouth Road, Ann Arbor, MI 48105, USA.
J Chromatogr Sci. 2004 Oct;42(9):484-90. doi: 10.1093/chromsci/42.9.484.
Evaporative light-scattering detection (ELSD) high-performance liquid chromatography (HPLC) is an alternative technology to low-wavelength UV analysis that is often employed when compounds lack sufficient absorptivity. Although ELSD provides an additional detector option for liquid chromatographers, studies in our laboratory indicate analyte properties may adversely affect the ability to detect certain molecules. In this investigation, a series of low-molecular-weight compounds of pharmaceutical interest are evaluated with two commercially available ELSDs. It is observed that melting point is a useful analyte property to consider in optimizing ELSD detectors. The melting point of the analyte should be significantly higher than what the compound will experience in the nebulizer/evaporator chambers to achieve the best analyte response. It is found that some analytes could not be distinguished from the evaporated mobile phase background when ELSD temperatures exceed the melting point of the compound. Though useful for many applications and of particular interest for compounds that are weak chromophores, ELSD falls short of being a "universal detector" technology. In addition to boiling points of mobile phase components, scientists should also consider the melting point and volatility of the analyte(s) when optimizing ELSD response.
蒸发光散射检测(ELSD)高效液相色谱法(HPLC)是低波长紫外分析的一种替代技术,常用于化合物缺乏足够吸光性的情况。尽管ELSD为液相色谱工作者提供了额外的检测选择,但我们实验室的研究表明,分析物的性质可能会对某些分子的检测能力产生不利影响。在本研究中,使用两种市售的ELSD对一系列具有药学意义的低分子量化合物进行了评估。结果发现,熔点是优化ELSD检测器时需要考虑的一个有用的分析物性质。为了获得最佳的分析物响应,分析物的熔点应显著高于其在雾化器/蒸发器腔室中所经历的温度。研究发现,当ELSD温度超过化合物的熔点时,一些分析物无法与蒸发的流动相背景区分开来。尽管ELSD对许多应用都很有用,对于弱发色团化合物尤其有吸引力,但它并非“通用检测”技术。在优化ELSD响应时,除了流动相成分的沸点外,科学家还应考虑分析物的熔点和挥发性。