Passive water control at the surface of a superhydrophobic lichen
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Ahti T (1982) The morphological interpretation of Cladoniiform thalli in lichens. Lichenologist 14:105–113
Barthlott W, Neinhuis C (1997) Purity of the sacred lotus, or escape from contamination in biological surfaces. Planta 202:1–8
Barthlott W, Schimmel T, Wiersch S, Koch K, Brede M, Barczewski M, Walheim S, Weis A, Kaltenmaier A, Leder A, Bohn HF (2010) The Salvinia paradox: superhydrophobic surfaces with hydrophilic pins for air-retention under water. Adv Mater 22:2325–2328
Culberson CF (1986) Biogenic relationships of the lichen substances in the framework of systematics. Bryologist 89:91–98
Ensikat HJ, Schulte AJ, Kock K, Barthlott W (2009) Droplets on superhydrophobic surface: visualization of the contact area by cryo-scanning electron microscopy. Langmuir 25:13077–13083
Hauck M, Jurgens SR, Brinkmann M, Herminghaus S (2008) Surface hydrophobicity causes SO2 tolerance in lichens. Ann Bot, London 101:531–539
Henssen A, Jahns HM (1974) Lichenes. Eine Einführung in die Flechtenkunde. “Physiologie des Flechtenthallus”. Thieme Verlag, Stuttgart
Holder CD (2007) Leaf water repellency as an adaptation to tropical montane cloud forest environments. Biotropica 39:767–770
Koch K, Bohn HF, Barthlott W (2009) Hierarchically sculptured plant surfaces and superhydrophobicity. Langmuir 54:114116–114120
Lakatos M, Rascher U, Büdel B (2006) Functional characteristics of corticolous lichens in the understory of a tropical lowland rain forest. New Phytol 172:679–695
Larson DW (1981) Differential wetting in some lichens and mosses: the role of morphology. Bryologist 84:1–15
McHale G, Newton MI, Shirtcliffe NJ (2010) Immersed superhydrophobic surfaces: gas exchange, slip and drag reduction properties. Soft Matter 6:714–719
Neinhuis C, Barthlott W (1997) Characterization and distribution of water-repellent, self-cleaning plant surfaces. Ann Bot, London 79:667–677
Pyatt FB (1969) Studies of the periodicity of spore discharge and germination in lichens. Bryologist 72:48–53
Pyatt FB (1974) Lichen propagules. In: Ahmadjian V, Hale ME (eds) The lichens. Academic Press, New York, USA, pp 117–145
Shirtcliffe NJ, McHale G, Newton MI, Perry CC, Pyatt FB (2006a) Plastron properties of a superhydrophobic surface. Appl Phys Lett 89:104106
Shirtcliffe NJ, Pyatt FB, Newton MI, McHale G (2006b) A lichen protected by a super-hydrophobic and breathable structure. J Plant Physiol 163:1193–1197
Shirtcliffe NJ, McHale G, Newton MI (2009) Learning from superhydrophobic plants: the use of hydrophilic areas on superhydrophobic surfaces for droplet control. Langmuir 25:14121–14128
Sievers F (1908) Ueber die Wasserversorgung der Flechten. Wissenschaftliche Beilage zum 38. Jahresbericht der Landw. Schule Marienberg mit Realabteilung zu Helmstedt, Bd.
Wõsten HAB, de Vries OMH, Wessels JGH (1993) lnterfacial self-assembly of a funga1 hydrophobin into a hydrophobic rodlet layer. Plant Cell 5:1567–1574
