Three New Organic Scintillators with Large Stokes Shifts

Author:

Barni E.1,Viscardi G.1,D'Ambrosio C.1,Leutz H.1,Puertolas D.1,Tailhardat S.1,Destruel P.1,Jolinat P.1,Güsten H.1

Affiliation:

1. Dipartimento di Chimica Generale ed Organica Applicata, Università di Torino, Italy (E.B., G.V.); CERN, Geneva, Switzerland (C.D., H.L., D.P., S.T.); Laboratoire de Génie Electrique, Universté Paul Sabatier, Toulouse, France (P.D., P.J.); and Institut für Meteorologie und Klimaforschung, Forschungszentrum Karlsruhe, Germany (H.G.)

Abstract

Three new organic scintillators (PMP-410, PMP470, and PMP480) were synthesized on the basis of 1-phenyl-3-mesityl-2-pyrazoline (PMP). Their synthesis and their polymerization in polystyrene are described. We measured their Stokes shifts in polystyrene (∼1.3 eV) between their absorption maxima (PMP-410: 287 nm; PMP-470: 315 nm; PMP-480: 314 nm) and their emission maxima (PMP-410: 408 nm; PMP-470: 480 nm; PMP-480: 479 nm). Absorption and emission maxima, Stokes shifts, and light yields of all eight pyrazoline scintillators so far synthesized are listed and are compared with results for 3-hydroxyflavone (3-HF). The advantages of these one-component dopants are discussed with respect to the usually applied two-component (scintillator plus wavelength shifter) dopants.

Publisher

SAGE Publications

Subject

Spectroscopy,Instrumentation

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