pyrazoline [pi'ræzəli:n]
- pyrazoline的基本解释
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二氢化吡唑, 吡唑啉, 邻二氮杂环戊烯
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The results indicate that the introduction of bulky groups into the pyrazoline ring increases the glass transition temperature of the compounds and changes the luminescent mechanism of the compounds.
结果表明,在吡唑啉化合物的5位引入稠环取代基提高了吡唑啉化合物的熔点;同时,5位取代基的电位性质还影响着化合物的发光行为。
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They are lanthanide-calixarene complexes, calixarene pyrazoline derivatives and calixarene-Schiff-base complexes.
并对它们的光致发光、电致发光及分子结构与发光性能的关系进行了系统研究。
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In this thesis, using the pyrazoline derivatives as the model compound, a series of highly monodisperse nanoparticles with controlled size and shape had been prepared.
迄今为止,关于有机超微粒尺寸效应的研究,以及无机纳米晶体研究领域已建物理模型在有机领域的普适性问题都还甚少报道,但唯此我们才有抢占制高点的机会。
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Diphenyl-5-pyrenyl-2-pyrazoline shows the emission characteristics of pyrene in solution or the emission characteristics of pyrazoline in films and bulk crystals.
但是,DPP超微粒则表现出了分别出自于芘坏386 nm、吡唑啉环465 nm和分子之间的吡唑啉坏-芘环电荷转移激子570 nm的三重发射,而且各自对应各自的激发光谱,即三重发射的光通道互不干涉。
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However, DPP nanoparticles were found to present multiple emission from pyrene at 385 nm, pyrazoline at 465 nm and an intermolecular pyrazoline-pyrene charge-transfer state at 570 nm, and each of them possesses individual optical channel.
在粒径确定时,用一确定波长激发时,发射光谱中不同发射的最大强度直接决定于对应激发光谱在该波长下的强度。另一方面,超微粒粒径的大小同样影响着三个部分的相对强度。随着粒径的增大,吡唑啉环-芘环之间电荷转移态570 nm的荧光发射逐渐消失。
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pyrazoline:吡唑啉
pyrazole 吡唑 | pyrazoline 吡唑啉 | pyrazolone 吡唑啉酮