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  • About
  • The Global ETD Search service is a free service for researchers to find electronic theses and dissertations. This service is provided by the Networked Digital Library of Theses and Dissertations.
    Our metadata is collected from universities around the world. If you manage a university/consortium/country archive and want to be added, details can be found on the NDLTD website.
1

PAPER SPRAY-MASS SPECTROMETRY COUPLED WITH PRESSURE-SENSITIVE ADHESIVE-BASED COLLECTION FOR THE RECOVERY AND DETECTION OF DRUGS OF ABUSE

Sarah Prunty (16631748) 30 August 2023 (has links)
<p> Illicit drug abuse is a widespread issue in the United States and worldwide. Many methods  seek to ease the analytical workload required to collect, analyze, and identify these drugs. Paper  spray-mass spectrometry (PS-MS) is one response to this analytical workload as it offers a rapid,  affordable, and simple means for drug identification by mass spectrometry. This work centers on  the use of pressure-sensitive adhesive (PSA) lined paper as a PS-MS substrate for drug recovery  and detection. The use of PSA paper as a sampling and analysis substrate has been previously  established but is expanded herein with new capabilities and applications. Chapter 2 introduces  the combination of color tests followed by PS-MS for presumptive and confirmatory drug  identification. Three color tests (cobalt thiocyanate, Simon, or Marquis) were performed on the  PSA paper with subsequent drug confirmation occurring by PS-MS. Chapter 3 examines the use  of PSA paper and PS-MS for the recovery and detection of fentanyl, fentanyl precursors, and  analogs from shipping-related surfaces and in the presence of high amounts of cutting agents. The  use of a cartridge that accommodates a full-sized PSA paper ticket was also explored for drug  detection. Chapter 4 assesses PS-MS with PSA paper on portable MS instrumentation. Analyte  recovery and carryover as well as instrument robustness were evaluated. The color test and PS-MS protocol examined in Chapter 2 was also successfully applied to a portable MS instrument.  Application of PS-MS to the portable system highlights the potential fieldability of the technique. </p>

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