Department of Chemistry and Biochemistry, The University of Texas at Austin, 78712, Austin, TX, USA.
J Am Soc Mass Spectrom. 1993 Feb;4(2):159-67. doi: 10.1016/1044-0305(93)85072-6.
The ionization of tetraphenylporphyrin (TPP) in a laser-desorbed metal ion plasma is examined by Fourier transform ion cyclotron resonance (FT-ICR) mass spectrometry. Competitive reaction pathways observed to generate abundant molecular ion species include electron detachment, cation attachment, charge exchange, metallation, and transmetallation in the positive ion mode and electron capture, metallation, and transmetallation in the negative ion mode. In general, cation attachment reactions dominate positive ion spectra below the laser irradiance threshold for plasma ignition, although the metallation product from TPP reaction with the metal atom, M, is observed. Negative ion products are not observed in the FT-ICR spectrum when a plasma is not formed. Under plasma ignition conditions, positive ion spectra include TPP formed by charge exchange with M(+), which is also present in the spectrum. Negative ion spectra are dominated by TPP; which is formed by attachment to thermal electrons generated in the plasma. Metallation reactions involving TPP and the metal substrate are examined. Positive ion metallation products are observed both in the absence of a plasma through reaction of TPP with M and by a second pathway under plasma ignition conditions through reaction of TPP with M(+). In negative ion mode, metallation is only observed under plasma ignition conditions through reaction of TPP with M. Observation of metallated products is found to be consistent with formation of stable metal oxidation states in the metallated porphyrin.
采用傅里叶变换离子回旋共振(FT-ICR)质谱研究了激光解吸金属离子等离子体中四苯基卟啉(TPP)的电离。观察到的生成丰富分子离子物种的竞争反应途径包括正离子模式下的电子脱附、阳离子加成、电荷交换、金属化和转金属化,以及负离子模式下的电子捕获、金属化和转金属化。一般来说,在等离子体点火的激光辐照度阈值以下,阳离子加成反应在正离子光谱中占主导地位,尽管观察到了TPP与金属原子 M 反应的金属化产物。当未形成等离子体时,在 FT-ICR 光谱中未观察到负离子产物。在等离子体点火条件下,正离子光谱包括通过与 M(+)的电荷交换形成的TPP,该离子也存在于光谱中。负离子光谱主要由TPP组成;它是通过等离子体中产生的热电子的附着形成的。研究了涉及 TPP 和金属基底的金属化反应。通过TPP与 M 的反应,在没有等离子体的情况下观察到正离子金属化产物,并且在等离子体点火条件下通过 TPP 与 M(+)的第二个途径观察到正离子金属化产物。在负离子模式下,仅在等离子体点火条件下通过TPP与 M 的反应观察到金属化。观察到的金属化产物与金属化卟啉中稳定的金属氧化态的形成一致。