Department of Chemistry, University of California, Riverside, 92521, Riverside, CA.
J Am Soc Mass Spectrom. 1994 Aug;5(8):731-9. doi: 10.1016/1044-0305(94)80005-7.
The first mass spectrometric analysis of a new class of hydrocarbon dendrimers that result from a convergent synthetic approach is reported. Molecular weights of a series of phenylacetylene dendrimers (715 to 14776 u MW) are characterized by ultraviolet matrix-assisted laser desorption (MALDltime-of-flight (TOF) mass spectrometry, direct and silver chemical ionization infrared laser desorption Fourier transform mass spectrometry @I'MSl, and ultraviolet matrix-assisted laser desorption silver chemical ionization Fourier transform mass spectromeby. New matrices and techniques were developed to facilitate analysis of the dendrimers. Mass measurement accuracies between 10 and 25 ppm are obtained for molecular ion species of the five dendrimers analyzed. Laser desorption time-of-flight and FI'MS techniques are shown to be complementary, with FTMS providing high mass resolution (27,000-67,000 resolving power) and accuracy for lower mass dendrimers (10-14 ppm) and MALD TOF yielding the highest resolution (1100 resolving power) and accuracy (25 ppm) for the largest dendrimer. These results are consistent with proposed empirical formulas.
报道了一种新的类碳氢树状大分子的质谱分析,该分子是通过收敛合成方法得到的。一系列苯乙炔树状大分子(715 至 14776 u MW)的分子量通过紫外基质辅助激光解吸(MALD-TOF)质谱、直接和银化学电离红外激光解吸傅里叶变换质谱(I'MSl)和紫外基质辅助激光解吸银化学电离傅里叶变换质谱进行了表征。开发了新的基质和技术来促进树状大分子的分析。对分析的五个树状大分子的分子离子物种进行了 10 至 25 ppm 的质量测量精度。激光解吸飞行时间和 FI'MS 技术是互补的,FTMS 提供了高质量分辨率(27,000-67,000 分辨率)和低质量树状大分子(10-14 ppm)的准确性,而 MALD TOF 则为最大的树状大分子提供了最高的分辨率(1100 分辨率)和准确性(25 ppm)。这些结果与提出的经验公式一致。