Abstract
We researched contribution of a charge transfer (CT) effect to desorption/ionization mechanism in our ultra-high sensitive laser desorption/ionization mass spectrometry based on surface plasmon (SP) excitation (SPLDI-MS). A quantity of CT electrons between a metal surface and sample molecules estimated from Raman measurement is correlated to a mass signal intensity of sample molecule in our SPLDI-MS method. A sample system with a larger quantity of CT electrons gave a higher mass signal intensity. Efficient use of the CT effect would lead to development of a higher sensitive SPLDI-MS and this development would contribute to advancement of various fields. © 2009 The Surface Science Society of Japan.
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Nagoshi, K., Sakata, K., Shibamoto, K., & Korenaga, T. (2009). Ionization mechanism in surface plasmon enhanced laser desorption/ ionization. In e-Journal of Surface Science and Nanotechnology (Vol. 7, pp. 93–96). The Japan Society of Vacuum and Surface Science. https://doi.org/10.1380/ejssnt.2009.93
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