New fast organic scintillators using intramolecular bromine quenching

I.B. Berlman , S.S. Lutz, J.M. Flournoy, C.B. Ashford, L.A. Franks, P.B. Lyons
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引用次数: 4

Abstract

Organic scintillator solutions with decay times as fast as 500 ps and with relatively high conversion efficiencies have been developed. The intramolecular quenching was achieved through the novel approach of adding a bromine atom to the 3- or 4-position of para-oligophenylenes, the fluorescent solutes in these binary solutions. The bromine serves to enhance singlet-to-triplet intersystem crossing in the chromophore, causing a reduction in the scintillation yield and a conconitant reduction in the decay time. The very fast value given above probably also involves some intermolecular self-quenching at high concentration. In addition, the bromine reduces the symmetry of the molecules, thereby increasing their solubility. Finally, an alkyl chain on the opposite para position further increases the solubility and also increases the immunity of the chromophore to quenching.

The following solutes were studied in binary liquid solutions and to a limited extent in plastics: 4-bromo-4″-(5-hexadecyl)-p-terphenyl: (4-BHTP), 3-bromo-4″-(5-hexadecyl)-p-terphenyl: (3-BHTP), 4-bromo-p-terphenyl: (4-BTP), 3-bromo-p-terphenyl: (3-BTP), 4-bromo-4‴-(5-hexadecyl)-p-quaterphenyl: (4-BHQP). The decay times for binary liquid solutions in toluene (at the indicated concentrations) were 0.51 ns for 4-BHTP (0.14 M), 0.75 ns for 3-BHTP (0.14 M), 0.57 ns for 3-BTP (0.14 M), and 1.3 ns for 4-BHQP (0.06 M). Binary plastics with 4-BHTP as the solute in concentrations up to 0.14 M were cast in polystyrene. The shortest decay time, 0.40 ns, was measured for the 0.14 M concentration. A plastic scintillator containing 3-BTP (0.11 M in polystyrene) had a decay time of 0.85 ns. These results compare favorably with the plastic scintillator BC-422 whose decay time is about 1.4 ns.

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分子内溴猝灭的新型快速有机闪烁体
有机闪烁体溶液的衰减时间快至500ps,具有相对较高的转换效率。分子内猝灭是通过在这些二元溶液中的荧光溶质对寡苯的3位或4位上添加一个溴原子来实现的。溴的作用是增强发色团中单重态到三重态的系统间交叉,导致闪烁产率的降低和伴随的衰减时间的减少。上面给出的非常快的值也可能涉及到高浓度时分子间的自猝灭。此外,溴降低了分子的对称性,从而增加了它们的溶解度。最后,相反对位上的烷基链进一步增加了溶解度,也增加了发色团对猝灭的免疫力。以下溶质在二元液体溶液中进行了研究,并在塑料中进行了有限的研究:4-溴-4″-(5-十六进基)-对三苯基:(4-BHTP), 3-溴-4″-(5-十六进基)-对三苯基:(3-BHTP), 4-溴-对三苯基:(4-BTP), 3-溴-对三苯基:(3-BTP), 4-溴-4 - -(5-十六进基)-对四苯基:(4-BHQP)。在甲苯中(在指定浓度下)二元液体溶液的衰变时间为:4-BHTP (0.14 M)为0.51 ns, 3-BHTP (0.14 M)为0.75 ns, 3-BTP (0.14 M)为0.57 ns, 4-BHQP (0.06 M)为1.3 ns。以4-BHTP为溶质的二元塑料在浓度高达0.14 M的聚苯乙烯中铸造。当浓度为0.14 M时,衰减时间最短,为0.40 ns。含有3-BTP(在聚苯乙烯中为0.11 M)的塑料闪烁体的衰减时间为0.85 ns。这些结果与衰减时间约为1.4 ns的塑料闪烁体BC-422相比,具有较好的一致性。
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