电喷雾
材料科学
聚合物
电场
喷射(流体)
化学物理
分子动力学
体积流量
流量(数学)
质量流量
纳米技术
水溶液
机械
化学工程
领域(数学)
时间演化
分析化学(期刊)
Zeta电位
动力学(音乐)
场强
作者
Zhentao Wang,Qian Dai,Xiaoyu Xu,Bin Li,Jiameng Tian,Kai Yu,Qingming Dong,Junfeng Wang
标识
DOI:10.1021/acsami.5c13819
摘要
A molecular dynamics (MD) method was employed to investigate the potential influence of operating parameters on the electrospray behavior of aqueous poly(ethylene glycol) (PEG) solutions at the micro- and nanoscale. The evolution of jet dynamics, droplet generation characteristics, and energy properties on the molecular scale under varying electric field strengths and flow rates were analyzed in the present study. The results reveal that polymer solution electrospray jets exhibit diverse dynamic behaviors including winding, linking, overflow, coalescence, and rupture. Both the electric field strength and flow rate significantly affect the atomization mode of the electrospray. As the electric field strength increases, the jet transitions from multicone to single-cone mode, accompanied by changes in jet length and position. Similarly, with an increase in liquid flow rate, the jet evolves from multicone to single-cone mode and further into a single-stranded cylindrical jet, along with a marked increase in the number of droplet clusters. Moreover, the electrospray current is more sensitive to variations in flow rate, and its response time becomes longer as the flow rate increases. This study elucidates the microscopic mechanisms underlying the dynamic behavior evolution of polymer solution electrospray jets, providing a theoretical foundation for the design of complex polymer atomization media and the optimization of the electrospray process parameters.
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