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Using rapid-scan EPR to improve the detection limit of quantitative EPR by more than one order of magnitude.


ABSTRACT: X-band rapid-scan EPR was implemented on a commercially available Bruker ELEXSYS E580 spectrometer. Room temperature rapid-scan and continuous-wave EPR spectra were recorded for amorphous silicon powder samples. By comparing the resulting signal intensities the feasibility of performing quantitative rapid-scan EPR is demonstrated. For different hydrogenated amorphous silicon samples, rapid-scan EPR results in signal-to-noise improvements by factors between 10 and 50. Rapid-scan EPR is thus capable of improving the detection limit of quantitative EPR by at least one order of magnitude. In addition, we provide a recipe for setting up and calibrating a conventional pulsed and continuous-wave EPR spectrometer for rapid-scan EPR.

SUBMITTER: Moser J 

PROVIDER: S-EPMC5556260 | biostudies-literature | 2017 Aug

REPOSITORIES: biostudies-literature

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Using rapid-scan EPR to improve the detection limit of quantitative EPR by more than one order of magnitude.

Möser J J   Lips K K   Tseytlin M M   Eaton G R GR   Eaton S S SS   Schnegg A A  

Journal of magnetic resonance (San Diego, Calif. : 1997) 20170417


X-band rapid-scan EPR was implemented on a commercially available Bruker ELEXSYS E580 spectrometer. Room temperature rapid-scan and continuous-wave EPR spectra were recorded for amorphous silicon powder samples. By comparing the resulting signal intensities the feasibility of performing quantitative rapid-scan EPR is demonstrated. For different hydrogenated amorphous silicon samples, rapid-scan EPR results in signal-to-noise improvements by factors between 10 and 50. Rapid-scan EPR is thus capab  ...[more]

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