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==References== | ==References== | ||
*Badu-Tawiah, A. K., Eberlin, L. S., Ouyang, Z., & Cooks, R. G. (2013). Chemical Aspects of the Extractive Methods of Ambient Ionization Mass Spectrometry. Annual Review of Physical Chemistry, 64(1), 481505. doi | *Badu-Tawiah, A. K., Eberlin, L. S., Ouyang, Z., & Cooks, R. G. (2013). Chemical Aspects of the Extractive Methods of Ambient Ionization Mass Spectrometry. Annual Review of Physical Chemistry, 64(1), 481505. {{doi}}10.1146/annurev-physchem-040412-110026 | ||
*Monge, M. E., Harris, G. A., Dwivedi, P., & Fernandez, F. M. (2013). Mass Spectrometry: Recent Advances in Direct Open Air Surface Sampling/Ionization. Chemical Reviews, 113(4), 22692308. {{doi}}dx.doi.org/10.1021/cr300309q | |||
*Wu, C., Dill, A. L., Eberlin, L. S., Cooks, R. G., & Ifa, D. R. (2012). Mass spectrometry imaging under ambient conditions. Mass Spectrometry Reviews; {{doi}}10.1002/mas.21360 | *Wu, C., Dill, A. L., Eberlin, L. S., Cooks, R. G., & Ifa, D. R. (2012). Mass spectrometry imaging under ambient conditions. Mass Spectrometry Reviews; {{doi}}10.1002/mas.21360 | ||
*Harris, G. A., Galhena, A. S., & Fernandez, F. M. (2011). Ambient Sampling/Ionization Mass Spectrometry: Applications and Current Trends. Analytical Chemistry, 83, 45084538; {{doi}}10.1021/ac200918u | *Harris, G. A., Galhena, A. S., & Fernandez, F. M. (2011). Ambient Sampling/Ionization Mass Spectrometry: Applications and Current Trends. Analytical Chemistry, 83, 45084538; {{doi}}10.1021/ac200918u | ||
*Weston, D. J. (2010). Ambient ionization mass spectrometry: current understanding of mechanistic theory; analytical performance and application areas. The Analyst, 135(4), 661668; {{doi}}10.1039/b925579f | *Weston, D. J. (2010). Ambient ionization mass spectrometry: current understanding of mechanistic theory; analytical performance and application areas. The Analyst, 135(4), 661668; {{doi}}10.1039/b925579f | ||
<includeonly>[[Category:Ambient ionization]]</includeonly> | <includeonly>[[Category:Ambient ionization]]</includeonly> |
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References
- Badu-Tawiah, A. K., Eberlin, L. S., Ouyang, Z., & Cooks, R. G. (2013). Chemical Aspects of the Extractive Methods of Ambient Ionization Mass Spectrometry. Annual Review of Physical Chemistry, 64(1), 481505. http://dx.doi.org/10.1146/annurev-physchem-040412-110026
- Monge, M. E., Harris, G. A., Dwivedi, P., & Fernandez, F. M. (2013). Mass Spectrometry: Recent Advances in Direct Open Air Surface Sampling/Ionization. Chemical Reviews, 113(4), 22692308. http://dx.doi.org/dx.doi.org/10.1021/cr300309q
- Wu, C., Dill, A. L., Eberlin, L. S., Cooks, R. G., & Ifa, D. R. (2012). Mass spectrometry imaging under ambient conditions. Mass Spectrometry Reviews; http://dx.doi.org/10.1002/mas.21360
- Harris, G. A., Galhena, A. S., & Fernandez, F. M. (2011). Ambient Sampling/Ionization Mass Spectrometry: Applications and Current Trends. Analytical Chemistry, 83, 45084538; http://dx.doi.org/10.1021/ac200918u
- Weston, D. J. (2010). Ambient ionization mass spectrometry: current understanding of mechanistic theory; analytical performance and application areas. The Analyst, 135(4), 661668; http://dx.doi.org/10.1039/b925579f