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Absorption-Mode: The Next Generation of Fourier Transform Mass Spectra

机译:吸收模式:下一代傅立叶变换质谱

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摘要

The Fourier transform spectrum can be presented in the absorption-mode (commonly used in FT-NMR), magnitude-mode (FT-ICR), and power-mode (engineering applications). As is routinely used in FT-NMR, it is well-known that the absorption-mode display gives a much narrower peak shape which greatly improves the spectrum; recently, the successful solution of the phase equation allowed broadband phase correction which makes it possible to apply the absorption-mode routinely in FT-ICR. With the empirical evidence provided herein, it has been confirmed that in addition to the improvement on resolving power, compared to the conventional magnitude-mode, the new absorption-mode improves the signal-to-noise ratio (S/N) of a spectrum by 1.4-fold and can improve the mass accuracy up to 2-fold with no extra cost in instrumentation. Therefore, it is worthwhile to apply and promote absorption-mode in routine FT-ICR experiments.
机译:傅里叶变换谱可以以吸收模式(通常用于FT-NMR),幅度模式(FT-ICR)和功率模式(工程应用)表示。正如在FT-NMR中常规使用的那样,众所周知,吸收模式显示的峰形要窄得多,从而大大改善了光谱。最近,相位方程的成功解决方案允许宽带相位校正,这使得可以将吸收模式常规应用于FT-ICR。利用本文提供的经验证据,已经证实,与传统的幅度模式相比,除了提高了分辨能力之外,新的吸收模式还改善了频谱的信噪比(S / N)。精度提高了1.4倍,并且可以将质量精度提高到2倍,而无需增加仪器成本。因此,值得在常规的FT-ICR实验中应用和促进吸收模式。

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