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1)  Room temperature phosphorescence spectra
室温磷光光谱
2)  three dimension room temperature phosphorescence (RTP)
三维室温磷光光谱
1.
The Three dimension fluorescence, three dimension room temperature phosphorescence (RTP) and UV/VIS spectra of benzimidazole at the concentration of 1×10 -4 mol/L were measured, and also its solid′s UV/VIS spectrum.
测量了浓度为 1× 1 0 - 4 mol/L苯并咪唑水溶液的三维荧光光谱 ,三维室温磷光光谱和紫外 /可见吸收光谱 ,还测量了苯并咪唑固体紫外 /可见吸收光谱 对化合物的荧光和室温磷光进行了分析、比较 ,发现苯并咪唑在 2 90nm、5 80nm和 870nm区域均有强而丰富的荧光谱线 ,而室温磷光谱线 (RTP)单一地出现在 2 90nm区域 ,且强度很小 ;同时还讨论了苯并咪唑的升频转换荧光现
3)  Room Temperature Phosphorescence
室温磷光
1.
Study on the Room Temperature Phosphorescence of Protein;
蛋白质的室温磷光法研究
2.
Room Temperature Phosphorescence of Carbaryl Induced by β-Cyclodextrin in the Presence of Heavy Atom Perturbation;
重原子存在下β-环糊精诱导西维因室温磷光
3.
Study for Paper Substrate Room Temperature Phosphorescence of Methyl Xanthine Derivative;
黄嘌呤甲基衍生物滤纸基质室温磷光光谱研究
4)  RTP
室温磷光
1.
An intensive room-temperature phosphorescence(RTP)of Carbaryl(CBL)was observed inβ-Cy-clodextrin(β-CD)aqueous solution in the presence of Cyclohexane(CH)due to the formation ofβ-CD/CBL/CHinclusion complexes.
将环己烷(CH)引入β_环糊精(β_CD)诱导西维因(CBL)室温磷光(RTP)体系,由于CH和β_CD及CBL形成包络物,可观测到CBL强的RTP。
2.
It has been found that pH has considerably effect on the intensity of RTP and fluorescence.
含有正丁醇 (n Bu)的 β 环糊精 ( β CD)溶液中 ,加入小分子有机物苯酚 (Phenol)后 ,1-溴代萘 ( 1 BrN)因 1 BrN/ β CD/n Bu/phenol四元包络物的形成而产生强的室温磷光(RTP) 。
3.
In this paper, a new Room Temperature Phosphorescence for Fluoren was first reported with cucurbi[B]turil as the revulsant and KI as the heavy atom perturber, the RTP maximum wavelengths λex/λem=275/518nm.
以八元瓜环为诱导剂、碘化钾作重原子微扰剂、亚硫酸钠除氧,实现了笏的室温磷光发射,体系在室温下产生了强而稳定的磷光。
5)  Room-temperature phosphorescence
室温磷光
1.
Room-temperature phosphorescence of 1-BrN induced by a combination of OPE-10 and Triton X-100 with β-CD was comparatively studied.
对比研究了非离子表面活性剂聚氧乙烯辛基酚醚 (OPE 10 ,n =10 )及聚氧乙烯特辛基酚醚 (TritonX 10 0 ,n =10 )和 β 环糊精 (β CD)协同诱导 1 溴萘 (1 BrN)室温磷光光谱
2.
Room-temperature phosphorescence of 1-bromonaphthalene (1-BrN) induced byaliphatic alcohols(A) was investigated in aqueous aerated g-cyclodextrin(P-CD) solution.
研究了β-环糊精(β-CD)溶液中直链脂肪醇(A)诱导1-溴萘(1-BrN)的室温磷光光谱性质。
3.
While most research works focus on the development of QDs based fluorescence sensors, much less attentions are paid to the room-temperature phosphorescence (RTP) properties of QDs and their potential for phosphorescence detection.
虽然量子点的荧光性质在分析化学中的应用已经十分广泛,但是量子点的室温磷光(Room-Temperature Phosphorescence,RTP)性质及其在分析检测中的应用得到的关注仍然较少。
6)  Room temperature phosphorimetry
室温磷光法
1.
Determination of trace fluorene and benzo[α]anthracene by room temperature phosphorimetry with cellulose membrane as solid snbstrate;
以国产微晶纤维素膜作基质室温磷光法测定痕量芴和苯并[a]蒽的研究
2.
The room temperature phosphorimetry (RTP) of thiourcil has been established using filter paper treated with sodium acetate as substrate.
本文以经NaAc处理的滤纸为基质,建立了测定痕量硫代尿嘧啶的纸基质室温磷光法。
补充资料:猝灭室温磷光法
分子式:
CAS号:

性质:与敏化室温磷光法相反而又互为补充的一种流体室温磷光分析法。它是利用分析物(猝灭剂)与某种发光体(如联乙酰)的激发三线态作用,根据对其室温磷光(RTP)发射所产生的猝灭程度来实现分析物的定量测定的。被猝灭的可以是发光体本身的RTP信号,也可以是所产生的S-RTP信号。

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