首页> 外文会议>International Conference on Mathematics and Natural Sciences >Optical Absorption Spectra of Mn~(2+) in of (C_6H_5CH_2CH_2NH_3)_2-MnCl_4 and (NH_2CH_2CH_2NH_2)_2-MnCI_4 Hybrid Compounds
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Optical Absorption Spectra of Mn~(2+) in of (C_6H_5CH_2CH_2NH_3)_2-MnCl_4 and (NH_2CH_2CH_2NH_2)_2-MnCI_4 Hybrid Compounds

机译:Mn〜(2+)中的光学吸收光谱(C_6H_5CH_2CH_2NH_3)_2-MNCL_4和(NH_2CH_2CH_2NH_2)_2-MNCI_4杂化化合物

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The flexibility in replacing the organic part of the organic-inorganic hybrid material has become an interesting material parameter to tune the functionality of their inorganic part. Based on the optical absorption in the UV-VIS region, we are able to observe the d-d transition of the Mn~(2+)in (C_6H_5CH_2CH_2NH_3)_2-MnCl_4, and (NH_2CH_2CH_2NH_2)_2-MnCl_4 hybrid compounds. The results of this experiment clearly indicate that there are six transitions related to the d-d transition of the Mn~(2+) from the high spin state, 6~S, to the excited states of 4~G, 4~D and 4~P. The transition energies are fitted to the Tanabe-Sugano diagram. The different in organic part change its Racah parameters and crystal field energy. This shows that the organic part could modify the bond the strength between the Mn and the Cl as well as the electronic interaction.
机译:更换有机 - 无机杂化材料的有机部分的灵活性已成为曲调其无机部分的功能的有趣材料参数。基于UV-VIS区域的光学吸收,我们能够观察到(C_6H_5CH_2CH_2NH_3)_2-MNCL_4和(NH_2CH_2CH_2NH_2)_2-MNCL_4杂化化合物的D-D转变。该实验的结果清楚地表明,从高旋转状态,6〜s的Mn〜(2+)的DD转变有六种过渡到4〜G,4〜D和4〜的激发态P.过渡能量适用于Tanabe-Sugano图。有机部分不同的不同改变其Racah参数和晶体场能量。这表明有机部分可以改变键合Mn和Cl之间的强度以及电子相互作用。

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