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1)  photosynthetic chamber
光合室
2)  Supramolecular assembly room temperature phosphorescence
超分子组合室温燐光
3)  visible light activation ambient temperature RAFT polymerization
可见光活化室温RAFT聚合
4)  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
5)  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。
6)  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。
补充资料:吸光-释光高分子
分子式:
CAS号:

性质:指那些能够吸收某些波长的光线(包括紫外线、X射线等)后能够再将能量以光辐射(光波长一般发生变化)的形式发射出去的高分子材料,属于光致发光材料,包括荧光材料和磷光材料。含有单环或多环芳族结构的聚合物多具有荧光特性,光致发光材料广泛用于显示装置和物质结构分析等方面,在科学研究其他领域的应用也日渐增多。

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