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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Theoretical investigation of one-photon and two-photon absorption properties for multiply N-confused porphyrins
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Theoretical investigation of one-photon and two-photon absorption properties for multiply N-confused porphyrins

机译:多重氮原子卟啉的单光子和双光子吸收特性的理论研究

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We have theoretically investigated a series of multiply N-confused porphyrins and their Zn or Cu complexes for the first time by using DFT(B3LYP/6-31G*) and ZINDO/SOS methods. The electronic structure, one-photon absorption (OPA), and two-photon absorption (TPA) properties have been studied in detail. The calculated results indicate that the OPA spectra of multiply N-confused porphyrins are red-shifted and the OPA intensities decrease compared to normal porphyrin. The maximum two photon absorption wavelengths lambda(max) are blue-shifted and the TPA cross sections delta(max) are increased 22.7-112.1 GM when the N atoms one by one are inverted from core to beta position to form multiply N-confused porphyrins. Especially delta(max) of N3CP get to 164.7 GM. The electron donors -C(6)F(5)s at meso-position can make the TPA cross section delta(max) increase. After forming metal complexes with Cu or Zn, the TPA properties of multiply N-confused porphyrins are further increased except for N3CP, N4CP. Our theoretical findings demonstrate that the multiply N-confused prophyrins as well as their metal complexes and derivatives are promising molecules that can be assembled series of materials with large TPA cross section, and are sure to be the subject of further investigation.
机译:我们在理论上首次使用DFT(B3LYP / 6-31G *)和ZINDO / SOS方法研究了一系列由N构成的杂卟啉及其Zn或Cu络合物。详细研究了电子结构,一光子吸收(OPA)和二光子吸收(TPA)特性。计算结果表明,与正常的卟啉相比,多个N混淆的卟啉的OPA光谱发生红移,并且OPA强度降低。当两个N原子从核心位置一个位置反转为一个β位置以形成多个N混淆的卟啉时,最大的两个光子吸收波长lambda(max)发生了蓝移,TPA截面的delta(max)增加了22.7-112.1 GM。 。特别是N3CP的delta(max)达到164.7 GM。在中间位置的电子给体-C(6)F(5)s可以使TPA截面的delta(max)增加。与Cu或Zn形成金属络合物后,除N3CP,N4CP外,与N杂化的多卟啉的TPA性质进一步提高。我们的理论发现表明,与N混淆的多重卟啉及其金属配合物和衍生物是有希望的分子,可以将其组装成具有大TPA横截面的一系列材料,并且肯定会成为进一步研究的对象。

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