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Hg+Br- HgBr recombination and collision-induced dissociation dynamics

机译:Hg + Br-> HgBr重组与碰撞诱导的解离动力学

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A global potential energy surface has been constructed for the system HgBr+Ar->Hg+Br+Ar to determine temperature dependent rate constants for the collision-induced dissociation (CID) and recombination of Hg and Br atoms.The surface was decomposed using a many-body expansion.Accurate two-body potentials for HgBr,HgAr,and ArBr were calculated using coupled cluster theory with single and double excitations and a perturbative treatment of triple excitations [CCSD(T)],as well as the multireference averaged coupled pair functional method.Correlation consistent basis sets were used to extrapolate to the complete basis set limit and corrections were included to account for scalar and spin-orbit relativistic effects,core-valence correlation,and the Lamb shift.The three-body potential was computed with the CCSD(T) method and triple-zeta quality basis sets.Quasiclassical trajectories using the final analytical potential surface were directly carried out on the CID of HgBr by Ar for a large sampling of initial rotational,vibrational,and collision energies.The recombination rate of Hg and Br atoms is a likely first step in mercury depletion events that have been observed in the Arctic troposphere during polar sunrise.The effective second order rate constant for this process was determined in this work from the calculated CID rate as a function of temperature using the principle of detailed balance,which resulted in k(T)=1.2X10~(-12) cm~3 molecule~(-1) s~(-1) at 260 K and 1 bar pressure.
机译:已经为系统HgBr + Ar-> Hg + Br + Ar构建了一个全局势能面,以确定碰撞诱导解离(CID)和Hg和Br原子重组的温度相关速率常数。 HgBr,HgAr和ArBr的精确两体势使用单和双激发耦合簇理论和三激发[CCSD(T)]的扰动处理以及多参考平均耦合对计算得出使用相关一致的基集外推至完整的基集极限,并包括修正以解决标量和自旋轨道相对论效应,核心价相关性和Lamb位移。对于大量样品,直接在Ar的HgBr的CID上直接使用最终分析势面的准经典轨迹Hg和Br原子的复合速率可能是极地日出期间在北极对流层中观测到的汞耗竭事件的第一步。该过程的有效二阶速率常数为根据详细平衡原理,由计算出的CID率随温度的变化确定了这项工作,从而得出k(T)= 1.2X10〜(-12)cm〜3分子〜(-1)s〜(-1 )在260 K和1 bar压力下。

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