AbstractAn atmospheric pressure ion lens improves the performance and ease of use of a nebulizer assisted electrospray (ion spray) ion source. The lens is comprised of an oblong-shaped stainless steel ring attached to an external high voltage power supply. The lens is located near the tip of the conductive sprayer, and is maintained at a potential less than that of the sprayer. The ion lens improves the shape of the equipotential lines in the vicinity of the sprayer tip. This lens gives approximately a 2-fold reduction in the signal RSD, a 2-fold increase in the ion signal, an increase in the number of multiply charged ions, and a much broader range of usable sprayer positions
The sample-ion signal in electrospray mass spectrometry is an approximately linear function of sampl...
A pulsed dual electrospray ionization source has been developed to generate positive and negative io...
Rationale: With the current state of the art detection of ions only taking place under vacuum con...
AbstractAn atmospheric pressure ion lens improves the performance and ease of use of a nebulizer ass...
The effect of an atmospheric pressure ion lens on electrospray ionization mass spectrometry (ESI-MS...
The purpose of this project is to characterize the properties of an atmospheric pressure ion lens u...
The purpose of this project is to characterize the properties of an atmospheric pressure ion lens u...
AbstractA simple, economical, and efficient electrospray ionization (ESI) source has been constructe...
A current challenge in the field of ESI-MS is the development of high-throughput methods and device...
A new atmospheric pressure ionization (API) source, viz. UniSpray, was evaluated for mass spectromet...
AbstractIn this work a new electrospray system has been developed which employs heat as a means of d...
A novel instrument for profiling the current density of nanoelectrospray ionization plumes in three ...
The coupling of atmospheric pressure ionization (API) sources like electrospray ionization (ESI) to ...
The sample-ion signal in electrospray mass spectrometry is an approximately linear function of sampl...
The sample-ion signal in electrospray mass spectrometry is an approximately linear function of sampl...
The sample-ion signal in electrospray mass spectrometry is an approximately linear function of sampl...
A pulsed dual electrospray ionization source has been developed to generate positive and negative io...
Rationale: With the current state of the art detection of ions only taking place under vacuum con...
AbstractAn atmospheric pressure ion lens improves the performance and ease of use of a nebulizer ass...
The effect of an atmospheric pressure ion lens on electrospray ionization mass spectrometry (ESI-MS...
The purpose of this project is to characterize the properties of an atmospheric pressure ion lens u...
The purpose of this project is to characterize the properties of an atmospheric pressure ion lens u...
AbstractA simple, economical, and efficient electrospray ionization (ESI) source has been constructe...
A current challenge in the field of ESI-MS is the development of high-throughput methods and device...
A new atmospheric pressure ionization (API) source, viz. UniSpray, was evaluated for mass spectromet...
AbstractIn this work a new electrospray system has been developed which employs heat as a means of d...
A novel instrument for profiling the current density of nanoelectrospray ionization plumes in three ...
The coupling of atmospheric pressure ionization (API) sources like electrospray ionization (ESI) to ...
The sample-ion signal in electrospray mass spectrometry is an approximately linear function of sampl...
The sample-ion signal in electrospray mass spectrometry is an approximately linear function of sampl...
The sample-ion signal in electrospray mass spectrometry is an approximately linear function of sampl...
A pulsed dual electrospray ionization source has been developed to generate positive and negative io...
Rationale: With the current state of the art detection of ions only taking place under vacuum con...