Spontaneous Coulomb fissions of drops on lubricated surfaces

M Marcus Lin (Physical Science and Engineering Division) P Peng Zhang A Aaron D. Ratschow (Technical University of Darmstadt) O Oscar Li (Physical Science and Engineering Division) S Sankara Arunachalam (Physical Science and Engineering Division) D Dan Daniel (Physical Science and Engineering Division)

Abstract

Charged water drops are more widespread than commonly acknowledged. For example, raindrops typically carry charges of order Q ∼ 1 pC, while routine pipetting in the laboratory produces drops with Q ∼ 50 pC. Here, we show that such modest charging can spontaneously generate periodic Coulomb fissions for evaporating water drops on lubricated surfaces, with more than 60 successive cycles observed over 30 min. Interestingly, the underlying instability can be quantitatively predicted by two fissility thresholds: one marking the onset of drop elongation and another triggering fission. Each fission culminates with a fine liquid jet that disintegrates into 40 to 50 microdroplets, expelled within microseconds. The phenomenon spans an extraordinary range of length scales (from millimeters to microns) and time scales (hours to microseconds), with broad potential applications ranging from nanoscale fabrication to electrospray ionization.

Article Details

Volume / Issue Vol. 123, Issue 18
Published May 05, 2026
ISSN 0027-8424
Publisher National Academy of Sciences

Authors (6)

M

Marcus Lin

Physical Science and Engineering Division

P

Peng Zhang

A

Aaron D. Ratschow

Technical University of Darmstadt

O

Oscar Li

Physical Science and Engineering Division

S

Sankara Arunachalam

Physical Science and Engineering Division

D

Dan Daniel

Physical Science and Engineering Division