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用于低分子量化合物高效激光解吸/电离的新型银和钯电致纳米结构。

Novel galvanic nanostructures of Ag and Pd for efficient laser desorption/ionization of low molecular weight compounds.

作者信息

Silina Yuliya E, Meier Florian, Nebolsin Valeriy A, Koch Marcus, Volmer Dietrich A

出版信息

J Am Soc Mass Spectrom. 2014 May;25(5):841-51. doi: 10.1007/s13361-014-0853-8.

Abstract

A simple approach for synthesis of palladium and silver nanostructures with readily adjustable morphologies was developed using galvanic electrochemical deposition, for application to surface-assisted laser desorption/ionization (SALDI) of small biological molecules. A range of fatty acids, triglycerides, carbohydrates, and antibiotics were investigated to assess the performance of the new materials. Intense analyte cations were generated from the galvanic surfaces upon UV laser irradiation such as potassium adducts for a film thickness <100 nm (originating from impurities of the electrolyte solution) and Pd and Ag cluster ions for films with a thickness >120 nm. Possible laser desorption/ionization mechanisms of these galvanic structures are discussed. The films exhibited self-organizing abilities and adjustable morphologies by changing electrochemical parameters. They did not require any stabilizing agents and were inexpensive and very easy to produce. SALDI analysis showed that the materials were stable under ambient conditions and analytical results with excellent measurement reproducibility and detection sensitivity similar to MALDI were obtained. Finally, we applied the galvanic surfaces to fast screening of natural oils with minimum sample preparation.

摘要

采用电化学生成法开发了一种简单的方法来合成形貌易于调节的钯和银纳米结构,用于小分子生物分子的表面辅助激光解吸/电离(SALDI)。研究了一系列脂肪酸、甘油三酯、碳水化合物和抗生素,以评估新材料的性能。在紫外激光照射下,电化学生成的表面会产生强烈的分析物阳离子,例如对于厚度<100 nm的薄膜会产生钾加合物(源自电解液杂质),对于厚度>120 nm的薄膜会产生钯和银簇离子。讨论了这些电化学生成结构可能的激光解吸/电离机制。通过改变电化学参数,这些薄膜表现出自组织能力和可调节的形貌。它们不需要任何稳定剂,价格低廉且易于制备。SALDI分析表明,这些材料在环境条件下稳定,并且获得了与基质辅助激光解吸/电离(MALDI)相似的具有出色测量重现性和检测灵敏度的分析结果。最后,我们将电化学生成的表面应用于天然油脂的快速筛选,且样品制备最少。

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