利用 FMO(前沿分子轨道)分析对 3-氧代-3H-苯并[f]色烯-2-羧酸 (ABKK) 对金属钠离子的化学传感器选择性的硅 DFT(密度泛函理论)研究

J. Al-Anshori, Ajar Faflul Abror, Juliandri Juliandri, Agus Safari, A. Hidayat
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引用次数: 0

摘要

利用 FMO(前沿分子轨道)分析方法成功研究了 3-氧代-3H-苯并[f]色烯-2-羧酸(ABKK)对 Na+ 金属离子的化学传感器选择性。ABKK 结构的几何形状通过 DFT(密度泛函理论)方法进行了优化,其函数/基集为M06/6-31G(d,p)。随后,分析了 ABKK 结构与钠离子结合前后的电子特性,并与代表价电荷 1-3 的 ABKK+ 其他金属离子结构进行了比较,其结果符合所使用的基集。几何优化结果表明,1ABKK+Na+ 比 2ABKK+Na+ 具有更正向的频率/峰值,相互作用能分别为 145 和 200.5 kcal/mol。忽略溶剂的作用,FMO 分析显示,荧光团与受体相互作用的带隙能(∆E LUMO Fl-Rs 1ABKK+Na+ )和(∆E HOMO Fl-Rs 2ABKK+Na+ )分别为 0.631 和 0.336 eV。此外,计算得出荧光团/∆E Fl 1ABKK+Na+ 和 2ABKK+Na+ 的带隙能分别为 4.347 和 4.362 eV。将这两种带隙能与 ABKK+ 其他金属离子的带隙能进行比较,估计 2ABKK+Na+ 的激发和 PET(光诱导电子转移)过程相对有利。最后,计算得出的 ABKK 对金属钠离子的选择性与实验室实验结果相对一致。
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In Silico DFT (Density Functional Theory) Study of Chemosensor Selectivity of 3-Oxo-3H-Benzo[f]chromen-2-Carboxylic Acid (ABKK) on Sodium Metal Ion Using FMO (Frontier Molecular Orbital) Analysis
The chemosensor selectivity of 3-oxo-3H-benzo[f]chromen-2-carboxylic acid (ABKK) toward Na+ metal ionhas been successfully studied in silico using FMO (Frontier Molecular Orbital) analysis method. The geometry of the ABKK structure was optimized by the DFT (Density Functional Theory) method with a function/basis set: M06/6-31G (d, p). Afterward, the electronic properties of the ABKK structure before and after binding to sodium ion were analyzed and compared with the ABKK+other metal ion structures representing valence charges 1-3 and within the constraints of the basis set used. The results of geometry optimization showed that 1ABKK+Na+ has a more positive frequency/minima than 2ABKK+Na+ with interaction energies of 145 and 200.5 kcal/mol, respectively. Ignoring the role of solvents, FMO analysis revealed that the bandgap energy of fluorophore and receptor interactions (∆E LUMO Fl-Rs 1ABKK+Na+) and (∆E HOMO Fl-Rs 2ABKK+Na+) were 0.631 and 0.336 eV, correspondingly. In addition, the bandgap energy of fluorophore/∆E Fl 1ABKK+Na+ and 2ABKK+Na+ were calculated at 4.347 and 4.362 eV. Comparing those two types of bandgap energies with the bandgap belonging to ABKK+other metal ions, the excitation, and PET (Photoinduced Electron Transfer) processes were estimated to be relatively favorable experienced by 2ABKK+Na+. Finally, the selectivity of ABKK toward sodium metal ions from the computational calculations was relatively in agreement with the laboratory experimental results.
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