Surface nanobubbles are experimentally known to survive for days at hydrophobic surfaces immersed in gas-oversaturated water. This is different from bulk nanobubbles, which are pressed out by the Laplace pressure against any gas oversaturation and dissolve in submilliseconds, as derived by Epstein and Plesset [J. Chem. Phys. 18, 1505 (1950)]. Pinning of the contact line has been speculated to be the reason for the stability of the surface nanobubbles. Building on an exact result by Popov [Phys. Rev. E 71, 036313 (2005)] on coffee stain evaporation, here we confirm this speculation by an exact calculation for single surface nanobubbles. It is based only on (i) the diffusion equation, (ii) Laplace pressure, and (iii) Henry's equation, i.e., f...
Surface nanobubbles are gaseous domains found at immersed substrates, whose remarkable persistence i...
The stability and growth or dissolution of a single surface nanobubble on a chemically patterned sur...
The stability and growth or dissolution of a single surface nanobubble on a chemically patterned sur...
Surface nanobubbles are experimentally known to survive for days at hydrophobic surfaces immersed in...
Surface nanobubbles are experimentally known to survive for days at hydrophobic surfaces immersed in...
Surface nanobubbles are experimentally known to survive for days at hydrophobic surfaces immersed in...
The remarkably long lifetime of surface nanobubbles has perplexed researchers for two decades. The c...
Recent experiments have convincingly demonstrated the existence of surface nanobubbles on submerged ...
Recent experiments have convincingly demonstrated the existence of surface nanobubbles on submerged ...
Surface nanobubbles should not be stable for more than a few milliseconds; however they have been sh...
Surface nanobubbles are nanoscopic gaseous domains on immersed substrates which can survive for days...
Surface nanobubbles are nanoscopic gaseous domains on immersed substrates which can survive for days...
The experimental evidence for the existence of nanobubbles is summarized. The paradox represented by...
The stability and growth or dissolution of a single surface nanobubble on a chemically patterned sur...
Surface nanobubbles are gaseous domains found at immersed substrates, whose remarkable persistence i...
Surface nanobubbles are gaseous domains found at immersed substrates, whose remarkable persistence i...
The stability and growth or dissolution of a single surface nanobubble on a chemically patterned sur...
The stability and growth or dissolution of a single surface nanobubble on a chemically patterned sur...
Surface nanobubbles are experimentally known to survive for days at hydrophobic surfaces immersed in...
Surface nanobubbles are experimentally known to survive for days at hydrophobic surfaces immersed in...
Surface nanobubbles are experimentally known to survive for days at hydrophobic surfaces immersed in...
The remarkably long lifetime of surface nanobubbles has perplexed researchers for two decades. The c...
Recent experiments have convincingly demonstrated the existence of surface nanobubbles on submerged ...
Recent experiments have convincingly demonstrated the existence of surface nanobubbles on submerged ...
Surface nanobubbles should not be stable for more than a few milliseconds; however they have been sh...
Surface nanobubbles are nanoscopic gaseous domains on immersed substrates which can survive for days...
Surface nanobubbles are nanoscopic gaseous domains on immersed substrates which can survive for days...
The experimental evidence for the existence of nanobubbles is summarized. The paradox represented by...
The stability and growth or dissolution of a single surface nanobubble on a chemically patterned sur...
Surface nanobubbles are gaseous domains found at immersed substrates, whose remarkable persistence i...
Surface nanobubbles are gaseous domains found at immersed substrates, whose remarkable persistence i...
The stability and growth or dissolution of a single surface nanobubble on a chemically patterned sur...
The stability and growth or dissolution of a single surface nanobubble on a chemically patterned sur...