Chen Dongping, Wang Weina, Li Danfeng, Wang Wenliang
School of Chemistry and Chemical Engineering, Shaanxi Normal University Xi'an 710119 P. R. China
RSC Adv. 2020 Jan 31;10(9):5173-5182. doi: 10.1039/c9ra08760e. eCollection 2020 Jan 29.
Synergy between molecules is ubiquitous in atmospheric clusters and significantly affects new particle formation (NPF). Herein, the effects of the synergy between base molecules on the stability and evaporation of MSA-X-Y (MSA = methanesulfonic acid; X, Y = ammonia (A), methylamine (M), or dimethylamine (D)) trimers were investigated density functional theory (DFT) and the atmospheric clusters dynamic code (ACDC) method. The results show that proton transfer from MSA to X is exothermal and barrierless due to the synergy between X and Y molecules in MSA-X-Y trimers compared with MSA-X dimers. Cyclic hydrogen bonds are a typical characteristic of the stable trimers. Topological analysis using atoms in molecules (AIM) theory indicates that the electron density () and Laplacian of the electron density (∇ ) at the bond critical points (BCPs) in the trimers exceed the standard range of hydrogen bonds. The affinity for attaching a Y molecule to the MSA-X dimers and the substitution of Y (Y = A and MA) by Y (Y = MA and DMA) in the MSA-X-Y trimers are thermodynamically spontaneous. In addition, the cyclic stabilization energy of the MSA-X-Y trimers increased as the alkalinities of X and Y increased. The total evaporation rate of the trimers decreased as the alkalinities of X and Y increased. Low temperature and high pressure significantly facilitate the formation of trimers. It is further confirmed that synergy plays an important role in atmospheric NPF events.
分子间的协同作用在大气团簇中普遍存在,并显著影响新粒子形成(NPF)。在此,采用密度泛函理论(DFT)和大气团簇动力学代码(ACDC)方法,研究了碱性分子间的协同作用对甲磺酸-X-Y(MSA = 甲磺酸;X、Y = 氨(A)、甲胺(M)或二甲胺(D))三聚体稳定性和蒸发的影响。结果表明,与MSA-X二聚体相比,由于MSA-X-Y三聚体中X和Y分子之间的协同作用,质子从MSA转移到X是放热且无势垒的。环状氢键是稳定三聚体的典型特征。利用分子中的原子(AIM)理论进行的拓扑分析表明,三聚体中键临界点(BCPs)处的电子密度()和电子密度的拉普拉斯算子(∇)超过了氢键的标准范围。Y分子与MSA-X二聚体结合的亲和力以及在MSA-X-Y三聚体中Y(Y = A和MA)被Y(Y = MA和DMA)取代在热力学上是自发的。此外,MSA-X-Y三聚体的环状稳定能随着X和Y碱度的增加而增加。三聚体的总蒸发速率随着X和Y碱度的增加而降低。低温和高压显著促进三聚体的形成。进一步证实了协同作用在大气NPF事件中起重要作用。