کد مقاله | کد نشریه | سال انتشار | مقاله انگلیسی | نسخه تمام متن |
---|---|---|---|---|
5393494 | 1505578 | 2014 | 10 صفحه PDF | دانلود رایگان |
![عکس صفحه اول مقاله: Using potential energy surface scans to examine the bond dissociation energies of trans-ReOS2N2 and [ReOS3N]1â model complexes Using potential energy surface scans to examine the bond dissociation energies of trans-ReOS2N2 and [ReOS3N]1â model complexes](/preview/png/5393494.png)
- Relaxed PES scans were performed for ReOS2N2 and [ReOS3N]1â complexes.
- Lengthening the ReN/S bond by 2Â Ã
recovers 90% of the BDE.
- For the model complexes, the BDEs are ranked ReNH2Â >Â ReN(H)CHOÂ >Â ReSHÂ >Â ReNH3.
- Inclusion of implicit solvent reduces the differences in BDEs.
Developing Re(V)-based therapeutic agents, where the ReO3+ core is coordinated to a multidentate ligand, is of interest in the radiopharmaceutical sciences because of the desirable nuclear properties of 186Re/188Re. A reliable yet cost-effective computational method for evaluating the strength of each coordination bond while preserving the integrity of the metal-ligand complex would provide quantitative input for ligand design. A relaxed potential energy surface (PES) scan approach is assessed for trans-ReO(SH)2(NH2)(NH3), [ReO(SH)3(NH2)]1â, and [ReO(SH)3(N(H)CHO)]1â model complexes to calculate bond dissociation energies (BDEs) for ReNH3, ReNH2, ReN(H)CHO and ReSH bonds, common components of Re(V) coordination environments. The PES scans were performed using various combinations of DFT/coupled-cluster methods and basis sets, and the effect of bulk solvent was examined by using the integral equation formalism of the polarizable continuum model (IEF-PCM). BDEs obtained from the PES scans are compared to those obtained for infinite separation. In the gas phase, the BDE curves reach about 90% of the total BDE at 2Â Ã and plateau by 3.0-3.5Â Ã beyond the equilibrium bond length; in the presence of implicit solvent, the BDEwater curves plateau at a shorter distance and more than 90% of the total BDE is recovered at 2Â Ã . The gas-phase PES scans follow the desired reaction coordinate for NH3, [N(H)CHO]1â and SH1â, but not for the poor leaving group NH21-. The desired heterolytic cleavage of the ReNH2 bond is achieved when the PES scans are performed in the presence of solvent. Elongating the ReS/N bonds in a rigid, multidentate trans-ReO-N2S2 complex yields BDE trends similar to those found for the model complexes (ReNH2Â >Â ReN(H)CHOÂ >Â ReSHÂ >Â ReNH3).
Journal: Computational and Theoretical Chemistry - Volume 1048, 15 November 2014, Pages 25-34