Program Maintenance: 5:00pm - one:00am EST Saturday-Sunday (April 2-3,
Office 2010 Pro Key, 2011)
The ACS Web Editions Platform will be undergoing technique upkeep. During this time, it will even now be achievable to search,
Office 2010 Keygen, browse material, and download total text HTML and PDF documents from ACS Journals, ACS Books, and C&EN Archives. Please note that it is going to not be doable to save favorite articles, save searches, access galley proofs, purchase individual ACS articles, or edit your personal profile. Thanks for your patience while we work to improve your online experience.
An approach that allows for adjacent closely spaced nanoelectrospray ionization (nESI) emitters to be pulsed alternately to generate ions of opposite polarity for transmission through a common interface is described. The potential difference between two or more nESI emitters in close proximity is minimized by applying the same polarity to both emitters at any given point in time but with the magnitude of only the active emitter’s potential being sufficiently high to sustain a stable spray. The reduced difference in potential between emitters allows the distance between emitters to be decreased to within a few millimeters so that compromises imposed by the use of multiple emitters for the generation of ions from distinct solutions using a common atmosphere interface are minimized.
AbstractCiting Articles
Citation data is made available by participants in CrossRef's Cited-by Linking service. For a more comprehensive list of citations to this article,
Office Pro Plus, users are encouraged to perform a lookup in SciFinder.
SciFinder Links Get Reference Detail Get Cited Related Material Gas-Phase Bioconjugation of Peptides via Ion/Ion Charge Inversion: Schiff Base Formation on the Conversion of Cations to AnionsAnalytical ChemistryGas-Phase Bioconjugation of Peptides via Ion/Ion Charge Inversion: Schiff Base Formation on the Conversion of Cations to Anions
Abstract: The selective covalent modification of singly protonated peptides in the gas-phase via ion/ion charge inversion reactions is demonstrated. Doubly deprotonated 4-formyl-1,3-benzene disulfonic acid serves as a reagent anion for forming a Schiff base via the ...
Quantitative Determination of Acetylcholine and Choline in Microdialysis Samples by MALDI-TOF MSAnalytical ChemistryQuantitative Determination of Acetylcholine and Choline in Microdialysis Samples by MALDI-TOF MS
Abstract: A simple,
Genuine Office 2010, sensitive,
microsoft Office 2010 keygen, and fast matrix-assisted laser desorption ionization time-of-flight mass spectrometry (MALDI-TOF MS) method was developed for the determination of acetylcholine (ACh) and choline (Ch) in microdialysis samples. An optimized dried ...
Other ACS content material by these authors:Jeremiah J. BowersJames R. ZimmermanRobert A. OglesbeeScott A. McLuckey