The ion-specific effects at the water/air interface represent a fundamentally essential topic of research, and high-level ab initio simulations are still demanding to reveal the microscopic picture of the interactions between ions and water at the solvation interface. In this work, we present a fragment-based ab initio molecular dynamics (AIMD) simulation of sodium halide solution droplet (in a neutral mixture of Na+, F–, Cl–, and Br– ions) at the MP2/aug-cc-pVDZ level. We show that the studied halide ions exhibit surface preference in the order (F– < Cl– –) which is in accordance with the experimental observation. The resulting potential of mean force (PMF) for Br– produces a distinct minimum at the water/air interface, while the minimum o...