Biancorosso L, Coccia E
Dipartimento di Scienze Chimiche e Farmaceutiche, Università di Trieste, Trieste, Italy.
J Comput Chem. 2025 Mar 30;46(8). doi: 10.1002/jcc.70087.
The production rate of hydrogen from formic acid on palladium is enhanced in the presence of an Au nanorod by irradiating the system at its plasmon frequency. Taking inspiration from this, we study here the effect of the shape of the Pd cluster (from Pd(111)) on the photoinduced charge injection into the HCOO moiety and adsorbed H, which are the reaction intermediates of the dehydrogenation of formic acid, upon irradiation with a pulse with a carrier frequency equal to the plasmon resonance of a (not included) Au nanorod. We simulate the electron/hole dynamics at frozen nuclei by propagating the time-dependent Schrödinger equation in the space of time-dependent density-functional-theory pseudo-eigenstates in the tight-binding approximation. We have taken into account a cluster with two layers of Pd and and atoms per layer (2L3 and 2L4, respectively) or with three layers and atoms per layer (3L3). For all the systems, a net negative charge on HCOO has been found, according to a photoinduced direct charge-transfer mechanism. For 3L3, an indirect charge-transfer mechanism, occurring after 50 fs and inducing a hole injection into HCOO, has also been found. Moreover, we also used a tailored pulse to populate the antibonding molecular orbital localized on the C-H bond for 3L3.
在金纳米棒存在的情况下,通过以其等离子体频率照射系统,可提高钯上甲酸制氢的产率。受此启发,我们在此研究了钯团簇(由Pd(111)构成)的形状对光致电荷注入到HCOO部分和吸附的H上的影响,HCOO部分和吸附的H是甲酸脱氢反应的中间体,在用载波频率等于(未包含的)金纳米棒等离子体共振的脉冲照射时。我们通过在紧束缚近似下的含时密度泛函理论赝本征态空间中传播含时薛定谔方程,来模拟固定原子核时的电子/空穴动力学。我们考虑了具有两层钯且每层有 个原子(分别为2L3和2L4)或三层且每层有 个原子(3L3)的团簇。对于所有系统,根据光致直接电荷转移机制,发现HCOO上有净负电荷。对于3L3,还发现了一种间接电荷转移机制,在50飞秒后发生,并导致空穴注入到HCOO中。此外,我们还使用了一个定制脉冲来填充3L3中位于C - H键上的反键分子轨道。