» Articles » PMID: 15828760

Versatile New Ion Source for the Analysis of Materials in Open Air Under Ambient Conditions

Overview
Journal Anal Chem
Specialty Chemistry
Date 2005 Apr 15
PMID 15828760
Citations 357
Authors
Affiliations
Soon will be listed here.
Abstract

A new ion source has been developed for rapid, noncontact analysis of materials at ambient pressure and at ground potential. The new source, termed DART (for "Direct Analysis in Real Time"), is based on the reactions of electronic or vibronic excited-state species with reagent molecules and polar or nonpolar analytes. DART has been installed on a high-resolution time-of-flight mass spectrometer (TOFMS) that provides improved selectivity and accurate elemental composition assignment through exact mass measurements. Although DART has been applied to the analysis of gases, liquids, and solids, a unique application is the direct detection of chemicals on surfaces without requiring sample preparation, such as wiping or solvent extraction. DART has demonstrated success in sampling hundreds of chemicals, including chemical agents and their signatures, pharmaceutics, metabolites, peptides and oligosaccharides, synthetic organics, organometallics, drugs of abuse, explosives, and toxic industrial chemicals. These species were detected on various surfaces, such as concrete, asphalt, human skin, currency, airline boarding passes, business cards, fruits, vegetables, spices, beverages, body fluids, horticultural leaves, cocktail glasses, and clothing. DART employs no radioactive components and is more versatile than devices using radioisotope-based ionization. Because its response is instantaneous, DART provides real-time information, a critical requirement for screening or high throughput.

Citing Articles

Untargeted Swab Touch Spray-Mass Spectrometry Analysis with Machine Learning for On-Site Breast Surgical Margin Assessment.

Chai L, Kao C, Wang M, Hsu C Anal Chem. 2025; 97(4):1960-1965.

PMID: 39827470 PMC: 11800181. DOI: 10.1021/acs.analchem.4c06062.


High-throughput screening of fentanyl analogs.

Miller S, Forero A, Tose L, Krechmer J, Muntean F, Fernandez-Lima F Talanta. 2024; 283:127191.

PMID: 39546835 PMC: 11651636. DOI: 10.1016/j.talanta.2024.127191.


Bioactive Compounds and Valorization of Coffee By-Products from the Origin: A Circular Economy Model from Local Practices in Zongolica, Mexico.

Bojorquez-Quintal E, Xotlanihua-Flores D, Bacchetta L, Diretto G, Maccioni O, Frusciante S Plants (Basel). 2024; 13(19).

PMID: 39409611 PMC: 11478550. DOI: 10.3390/plants13192741.


Laser Desorption of Explosives from the Surface of Different Real-World Materials Studied Using CCl-Dopant-Assisted Ion Mobility Spectrometry.

Matas E, Petrik M, Sabo M, Matejcik S Molecules. 2024; 29(18).

PMID: 39339477 PMC: 11433934. DOI: 10.3390/molecules29184482.


Performance Comparison of Ambient Ionization Techniques Using a Single Quadrupole Mass Spectrometer for the Analysis of Amino Acids, Drugs, and Explosives.

Mathias S, Amerio-Cox M, Jackson T, Douce D, McCullough B, Sage A J Am Soc Mass Spectrom. 2024; 35(10):2480-2489.

PMID: 39221767 PMC: 11457451. DOI: 10.1021/jasms.4c00277.