Supplementary data for "Nanostructure explains the behavior of slippery covalently-attached liquid surfaces"
<p>Slippery covalently-attached liquid surfaces (SCALS) with low contact angle hysteresis (CAH, <5˚) and nanoscale thickness display impressive anti-adhesive properties, similar to lubricant-infused surfaces.<br> Their efficacy is generally attributed to the liquid-like mobility of the constituent tethered chains. However, the precise physico-chemical properties that facilitate this mobility are unknown, hindering rational design. This work quantifies the chain length, grafting density, and microviscosity of a range of polydimethylsiloxane (PDMS) SCALS, elucidating the nanostructure responsible for their properties.</p> <p>Zip files of neutron reflectometry and single-molecule force spectroscopy data are included here.</p>
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36/100
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