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1)  charge transfer complex
电荷转移配合物
1.
Investigation of the Absorption and Luminescence Properties of Fullerene C_(60) and its Charge Transfer Complexes;
富勒烯C_(60)及其电荷转移配合物的吸光、发光特性研究
2.
A photochromic charge transfer complex between tungstophosphoric acid with Dawson structure and quinoline have been synthesized and characterized by elemental analysis, IR, UV vis and ESR.
近年来有关多金属氧酸盐与有机化合物间电荷转移配合物的光化学和光致变色过程的研究日趋活跃[1,2],但迄今这类电荷转移配合物中的多金属氧酸盐基本上为Lindquist结构的同多酸或Keggin结构的杂多酸,有机给体则基本上限于有机胺及其。
3.
Eight new organo polyoxoinetalate charge transfer complexes (DH)\-6X\-2W\-\{18\}O\-\{62\}·(solv)\-n(D=Oxin(8 hydroxyquinoline), Py(Pyridine), Tol(toluene), A(aniline), DMA (N,N dimethyaniline), DEA(N,N diethylaniline), X=P, As; solv=DMF, H\-2O) was synthesized and characterized by using elemental analysis, IR, ESR.
近年来,有机多金属氧酸盐电荷转移配合物由于有特殊的光、电、磁性质在催化、功能材料及药物化学等领域受到研究者的广泛关注[1]。
2)  Charge-transfer complex
电荷转移配合物
1.
Solid-state synthesis of novel charge-transfer complex based on acridine orange and molybdphosphoric acid;
固相法制备新型吖啶橙-磷钼酸电荷转移配合物
2.
A charge-transfer complex, [(C2H4OH)3NH]2·[HPMo12O40]·3H2O, has been synthesized and characterized.
多金属氧酸阴离子具有较强的接受电子的能力,是一类良好的电子受体,它可以与含N、S、O等原子的有机电子给体(如胺类、Gly鄄Gly、TTF、ET、八羟基喹啉、冠醚、尿素、咪唑等)结合,形成电荷转移配合物(CTP)。
3.
This paper reports the experimental results of a chemical modified carbon paste electrode with a charge-transfer complex of 2+ Cu which could electrocatalyze the reduction of oxygen and result in the decrease of the reduction potential .
本文研制了一种Cu~(2+)-邻菲啰啉-1,2-二氰基-1,2二巯基乙烯三元电荷转移配合物修饰碳糊电极,通过其机理研究,发现修饰物能催化氧的还原反应,使氧能在较正的电位下发生还原,对氧选择性高,用它来测定氧灵敏度高、响应速度快,线性范围宽,测量精度高,稳定性好;电极材料便宜,制作简单,稳定性特别好,它克服了化学修饰电极不稳定、使用寿命短的缺点,适合商品化制作,我们正在设计该溶解氧传感器的商品化结构,并希望研制一种智能型传感器。
3)  charge transfer complex (CTC)
电荷转移配合物
4)  charge transfer complexes
电荷转移配合物
1.
Synthesis and characterization of tungsten or vanadium substituted molybdophosphoric acid charge transfer complexes with Keggin structure;
合成了 2个Keggin结构混合多阴离子的喹啉电荷转移配合物
5)  charge-transfer compound
电荷转移配合物
1.
Organic-polyoxometalate Charge-transfer compound(CTP) is a kind of outstanding molecular-based function material, which show not only a special light, electricity, magnetic properties, but also a vast development application foreground in catalysis, functional materials and the application field of medicine.
有机-多酸电荷转移配合物(CTP)是一类分子基的功能材料,具有良好的光、电、磁学性质,在催化、药物及功能材料等领域具有广阔的应用前景。
6)  charge transfer complex
电荷转移络合物
1.
The multifunction initiator was formed in-situ from the charge transfer complex system consisting of diphenylmethane bismaleimide and styrene, in the presence of 1-phenylethyl bromide as initiator and CuBr/2,2'-bipyridine as catalyst system.
引发二苯甲烷双马来酰亚胺/苯乙烯电荷转移络合物体系就地优先生成多官能团引发剂,再引发苯乙烯聚合。
2.
The result showed that CA-NMIm charge transfer complex (CTC) was formed, and the molar ratio of the CTC was 1∶1 (CA∶NMIm).
研究了四氯苯醌 (CA)与N 甲基咪唑 (NMIm)在CH2 Cl2 中的基态作用 ,结果表明二者反应形成CA与NMIm的摩尔比为 1∶1的电荷转移络合物 (CTC) ,并采用UV Vis、IR、及NMR进行了表征。
3.
The application of charge transfer complex in pharmaceuticals analysis in recent years is reviewed in this paper with 21 references.
综述了电荷转移络合物在药物定量分析方面的应用,包括反应的条件、机理等。
补充资料:电荷转移跃迁
分子式:
CAS号:

性质:由分子的某个部分转移出一个电荷或其大部分电量的电子跃迁过程。给出电荷者称为电子给体,接受电荷者称为电子受体。若接受电荷者为同一分子的另一部分,此过程称为分子内电荷转移;若发生于两个分子之间则称为分子间电荷转移。典型的例子如给体-受体复合物或多色分子等。电荷转移吸收带有时会被其他成分的吸收所掩盖。

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