DST Unit of Nanoscience (DST UNS) and Thematic Unit of Excellence (TUE), Department of Chemistry, Indian Institute of Technology Madras, Chennai-60036 (India).
Angew Chem Int Ed Engl. 2014 Jun 2;53(23):5936-40. doi: 10.1002/anie.201311053. Epub 2014 Mar 18.
Ambient ionization is achieved by spraying from a carbon nanotube (CNT)-impregnated paper surface under the influence of small voltages (≥3 V). Organic molecules give simple high-quality mass spectra without fragmentation in the positive or negative ion modes. Conventional field ionization is ruled out, and it appears that field emission of microdroplets occurs. Microscopic examination of the CNT paper confirms that the nanoscale features at the paper surface are responsible for the high electric fields. Raman spectra imply substantial current flows in the nanotubes. The performance of this analytical method was demonstrated for a range of volatile and nonvolatile compounds and a variety of matrices.
在小电压(≥3 V)的影响下,从涂有碳纳米管(CNT)的纸表面喷雾即可实现环境电离。在正离子或负离子模式下,有机分子无需碎裂即可给出简单的高质量质谱。排除了常规的场致电离,似乎发生了微液滴的场致发射。对 CNT 纸的微观检查证实,纸表面的纳米级特征是产生高电场的原因。拉曼光谱表明,在纳米管中有大量电流流动。该分析方法的性能已在一系列挥发性和非挥发性化合物以及各种基质中得到验证。