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Effect of CO adsorption on properties of transition metal doped porphyrin: A DFT and TD-DFT study

机译:CO吸附对过渡金属掺杂卟啉性能的影响:DFT和TD-DFT研究

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摘要

The structural, electronic and optical properties of transition metal doped porphyrin (TM@P; TM = Mn, Co, Fe, Cu, Ni, Zn) as well as the effect of CO adsorption on TM@P properties have been investigated using the density functional theory (DFT). The presented results include adsorption energies, bond lengths, electronic configurations, magnetic moments, density of states, frontier molecular orbitals, and UV-Vis. spectra. Our calculation results show that, the CO molecule favors to be adsorbed on TM-doped Porphyrin with its carbon head. The most energetically stable adsorption of CO is reported for Fe doped Porphyrin. The interaction between CO molecules with TM@P is attributed to donation-back donation as well as charge transfer mechanisms. Mn, Co and Fe-doped porphyrins have visible active nature which may be affected by CO adsorption, whereas, Ni, Cu and Zn-doped porphyrins have UV active nature which not affected by CO adsorption. These results may be meaningful for CO removal and detection.
机译:使用密度研究了过渡金属掺杂卟啉(TM @ P; TM = Mn,Co,Fe,Cu,Ni,Zn)的结构,电子和光学性质,以及CO吸附对TM @ P性质的影响。功能理论(DFT)。提出的结果包括吸附能,键长,电子构型,磁矩,状态密度,前沿分子轨道和UV-Vis。光谱。我们的计算结果表明,CO分子的碳头有利于被TM掺杂的卟啉吸附。据报道,Fe掺杂的卟啉对能量的吸收最稳定。 CO分子与TM @ P之间的相互作用归因于捐赠回赠以及电荷转移机制。 Mn,Co和Fe掺杂的卟啉具有可见的活性,可能受CO吸附的影响,而Ni,Cu和Zn掺杂的卟啉具有UV活性,不受CO吸附的影响。这些结果对于去除和检测一氧化碳可能是有意义的。

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