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质谱[M Na]峰从哪里来?

(2014-12-23 22:45:44)
标签:

质谱

哪里

碱性

钠峰

It is very common to see Na (sodium) and K (potassium) adducts in the MALDI spectrum. The sodium and potassium comes from the water used in the peptide solvents. Even distilled and deionized water has trace amounts of sodium and potassium ions, which can never be entirely removed. These become ionized during the MALDI mass spec process and bind to the free carboxyl groups of the peptide. Because there is no water purification system that will remove every single sodium or potassium ion from water, seeing the sodium and potassium adducts at times is very common and unavoidable in MALDI mass spec. This is not an indication that the peptide is not pure, nor should it be confused with an incorrect molecular weight.
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引申思考:

[M Na] 来定量的可行性?

答案: 对于碱性氧元素产生的Na峰会更稳定

Sodium adduct formation efficiency in ESI source.

来自于 2013年 Journal of Mass Spectrometry

Formation of sodium adducts in electrospray (ESI) has been known for long time, but has not been used extensively in practice, and several important aspects of Na( ) adduct formation in ESI source have been almost unexplored: the ionization efficiency of different molecules via Na( ) adduct formation, its dependence on molecular structure and Na( ) ion concentration in solution, fragmentation behaviour of the adducts as well as the ruggedness (a prerequisite for wider practical use) of ionization via Na( ) adduct formation. In this work, we have developed a parameter describing sodium adducts formation efficiency (SAFE) of neutral molecules and have built a SAFE scale that ranges for over four orders of magnitude and contains 19 compounds. In general, oxygen bases have higher efficiency of Na( ) adducts formation than nitrogen bases because of the higher partial negative charge on oxygen atoms and competition from protonation in the case of nitrogen bases. Chelating ability strongly increases the Na( ) adduct formation efficiency. We show that not only protonation but also Na( ) adduct formation is a quantitative and reproducible process if relative measurements are performed.

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