首页> 外文期刊>Inorganica Chimica Acta >Fluxional chromophores of bis(di-2-pyridylamine)nitritocopper(II) cations: crystal structures and electronic properties of the complexes bis(di-2-pyridylamine)nitritocopper(II) nitrate and bis(di-2-pyridylamine)nitritocopper(II) perchlorate
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Fluxional chromophores of bis(di-2-pyridylamine)nitritocopper(II) cations: crystal structures and electronic properties of the complexes bis(di-2-pyridylamine)nitritocopper(II) nitrate and bis(di-2-pyridylamine)nitritocopper(II) perchlorate

机译:双(二-2-吡啶胺)硝铜(II)阳离子的通量发色团:硝酸双(二-2-吡啶胺)硝铜(II)和双(二-2-吡啶胺)硝铜(II)的晶体结构和电子性质)高氯酸盐

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The X-ray crystal structures of two cation-distortion isomers of [Cu(dpyam)(2)(ONO)](NO3) (1) and [Cu(dpyaM)(2)(ONO)](ClO4) (2) complexes are reported and shown to contain an asymmetric cis-distorted CuN4O2 chromophore. In I the copper atom and the asymmetrically bonded nitrito group lie on a crystallographic C-2 axis. The nitrito group is clearly disordered about the C2 axis giving a square pyramidal cis-distorted octahedral (4+1+1*) chromophore rather than a pseudo regular cis-distorted octahedral chromphore. In 2 a distortion of the CuN4O2 chromophore towards a square pyramidal (4+1 +1*) geometry is also present, but with well-ordered and less asymmetric nitrito group. The polycrystalline ESR spectra of 1 and 2 are temperature independent suggesting that both complexes appear to be near the static distortion limit of the fluxional CuN4O2 chromophore geometry. The electronic reflectance spectra of I and 2 involve two bands at approximately 14 700 and 9800 cm (-1) for 1, and approximately 14 970 and 10000cm(-1) for 2 and relate to the underlying static CuN4O2 (4+1+1*) chromophore geometry. (C) 2002 Elsevier Science B.V. All rights reserved. [References: 39]
机译:[Cu(dpyam)(2)(ONO)](NO3)(1)和[Cu(dpyaM)(2)(ONO)](ClO4)(2)的两个阳离子变形异构体的X射线晶体结构据报道,这些配合物含有不对称的顺式扭曲的CuN4O2发色团。在I中,铜原子和不对称键合的亚硝基基团位于晶体学的C-2轴上。亚硝基基团明显绕C2轴无序,产生方形金字塔形的顺式八面体(4 + 1 + 1 *)发色团,而不是伪的规则的顺式八面体八面体。在图2中,还出现了CuN4O2生色团向方形锥体(4 + 1 + 1 *)几何形状的扭曲,但具有良好有序且不对称的亚硝基基团。 1和2的多晶ESR光谱与温度无关,表明这两种络合物似乎都位于通量CuN4O2生色团几何结构的静态变形极限附近。 I和2的电子反射光谱涉及两个波段,分别为1和14700和9800 cm(-1)和2分别为14 970和10000cm(-1)且与下面的静态CuN4O2(4 + 1 + 1)有关*)发色团几何。 (C)2002 Elsevier Science B.V.保留所有权利。 [参考:39]

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