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A new matrix of MALDI-TOF MS for the analysis of thiolate-protected gold clusters

机译:一种新的MALDI-TOF MS矩阵,用于分析硫醇保护的金簇

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Mass spectrometry (MS) can play an important role in determining the number of gold atoms per ligand molecule in thiolated Au clusters (CLs). However, the precise determination of the formulae of thiolated Au CLs is not a routine analysis and is still technically challenging. In this study, we report a new matrix for the matrix assisted laser desorption/ionization (MALDI) technique for thiolated Au CLs based on a commercially available ?±,?2-diphenylfumaronitrile (DPF) matrix. This MALDI-time of flight (TOF) MS involving a DPF matrix allowed detection of intact Au25(SCH2CH2Ph)18 and Au25(SC12H25)18 ions with less fragmentation (i.e. softer ionization process) and stronger ion peak intensities compared to similar techniques containing a typical trans-2-[3-(4-tert-butylphenyl)-2-methyl-2propenylidene] malononitrile (DCTB) matrix for Au CLs. The DPF compound exhibited an absorbance maximum at about 336 nm, thereby making this matrix suitable for common N2 lasers (337 nm). The DPF matrix was suggested to function as an electron transfer agent from DPFa?’?? to the Au CLs, leading to effective production of intact radical anions from Au CLs in negative ion operating mode.
机译:质谱法(MS)可以在确定硫化Au簇(Cls)中每个配体分子的金原子数量起到重要作用。然而,精确测定硫醇化AU CLS的式不是常规分析,并且仍在技术上挑战。在这项研究中,基于市售的α±2-二苯基五腈(DPF)基质,我们报告了硫化Au Cls的基质辅助激光解吸/电离(MALDI)技术的新矩阵。这种涉及DPF基质的飞行时间(TOF)MS允许检测完整Au25(SCH2CH2PH)18和Au25(SC12H25)18离子,与含有含有a的类似技术相比,具有较少的碎片(即更软的电离过程)和更强的离子峰值强度。典型的反式2- [3-(4-叔丁基苯基)-2-甲基-2丙二烷基]丙二腈(DCTB)基质用于Au Cls。 DPF化合物在约336nm处表现出吸光度最大值,从而使该基质适用于普通N2激光器(337nm)。建议DPF基质用作来自DPFA的电子转移剂?''对于Au Cls,导致在负离子操作模式中有效地从AU CLS中产生完整的自由基阴离子。

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