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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Photogeneration of two metastable NO linkage isomers with high populations of up to 76% in trans-[RuCl(py)(4)(NO)][PF6](2) center dot 1/2H(2)O
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Photogeneration of two metastable NO linkage isomers with high populations of up to 76% in trans-[RuCl(py)(4)(NO)][PF6](2) center dot 1/2H(2)O

机译:在反式-[RuCl(py)(4)(NO)] [PF6](2)中心点1 / 2H(2)O中具有高达76%的高种群的两个亚稳态NO键联异构体的光生

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Two light-induced metastable NO linkage isomers with oxygen-bound (SI) and side-on configuration (SII) of NO are generated in trans-[RuCl(py)(4)(NO)][PF6](2) center dot 1/2 H2O. Irradiation by light in the blue-green spectral range (450-530 nm) leads to the population of SI. A further irradiation by near infrared light (920-1100 nm) transfers SI into SII at temperatures below 150 K. The heat release during the thermal decay of the linkage isomers shows that SI and SII are separated from the ground state (GS) by potential barriers of E-A(SI) = 0.70(3) eV and E-A(SII) = 0.38(3) eV, and are energetically situated at 1.42(6) eV and 1.07(7) eV above the ground state, respectively. Maximum populations of 76% for SI and of 56% for SII can be generated, as determined by the decrease of the nu(NO) stretching absorption band of the ground state. The nu(NO) stretching vibration shifts to lower energies by 143 cm(-1) in SI and by 300 cm(-1) in SII, indicating that the linkage isomers are of the same type as found in other octahedrally coordinated transition-metal nitrosyl complexes. The experimental observations are in agreement with results from calculations by the density functional theory, which predict that the metastable states correspond to a side-on bonded (SII) and an isonitrosyl (SI) configuration of the NO ligand. The calculations provide the energy minima of the ground state and the metastable states SI and SII as well as the saddle points along the reaction coordinate Q. This reaction coordinate corresponds to a rotation of the NO ligand by about 901 (SII) and 1801 (SI), and therefore allows the comparison between observed and calculated activation energies.
机译:在反式-[RuCl(py)(4)(NO)] [PF6](2)中心点生成具有NO的氧结合(SI)和侧面构型(SII)的两个光诱导的亚稳NO键异构体1/2 H2O。蓝绿色光谱范围(450-530 nm)中的光照射会导致SI扩散。在低于150 K的温度下,进一步的近红外光(920-1100 nm)辐射将SI转移到SII中。在键合异构体热衰变过程中释放的热量表明,SI和SII通过电势与基态(GS)分离。 EA(SI)= 0.70(3)eV的势垒和EA(SII)= 0.38(3)eV的势垒,分别位于基态以上1.42(6)eV和1.07(7)eV。根据基态的nu(NO)拉伸吸收带的减少,可以确定SI的最大种群为76%,SII的最大种群为56%。 nu(NO)拉伸振动在SI中位移为143 cm(-1),在SII中位移为300 cm(-1),表明连接异构体的类型与其他八面体配位过渡金属相同亚硝酰基配合物。实验观察结果与密度泛函理论的计算结果相吻合,密度泛函理论预测亚稳态对应于NO配体的侧键(SII)和异亚硝酰基(SI)构型。计算提供了基态和亚稳态SI和SII的能量最小值,以及沿着反应坐标Q的鞍点。该反应坐标对应于NO配体旋转约901(SII)和1801(SI ),因此可以比较观察到的和计算出的活化能。

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