Surface second harmonic generation (SHG) was used to probe orientation of cavitand molecules deposited on water as Langmuir films and on fused silica substrates either bare or functionalized with a surfactant. Measurements performed during compression of the Langmuir films reveal that while the surface density may vary, molecules always appear more or less oriented with their long axis perpendicular to the water surface. Phase measurements indicate that the vase-like heads of the molecules cover the water for Langmuir films, but face the air for monolayers spread on surfactant-coated substrates.

Orientation of Cavitands at Air/Water and Air/Solid Interfaces Studied by SHG / F., LAGUGN LABARTHET; T., Yu; B., Barger; D. K., Shenoy; Dalcanale, Enrico; Y. R., Shen. - In: CHEMICAL PHYSICS LETTERS. - ISSN 0009-2614. - 381:3-4(2003), pp. 322-328. [10.1016/j.cplett.2003.09.090]

Orientation of Cavitands at Air/Water and Air/Solid Interfaces Studied by SHG

DALCANALE, Enrico;
2003-01-01

Abstract

Surface second harmonic generation (SHG) was used to probe orientation of cavitand molecules deposited on water as Langmuir films and on fused silica substrates either bare or functionalized with a surfactant. Measurements performed during compression of the Langmuir films reveal that while the surface density may vary, molecules always appear more or less oriented with their long axis perpendicular to the water surface. Phase measurements indicate that the vase-like heads of the molecules cover the water for Langmuir films, but face the air for monolayers spread on surfactant-coated substrates.
2003
Orientation of Cavitands at Air/Water and Air/Solid Interfaces Studied by SHG / F., LAGUGN LABARTHET; T., Yu; B., Barger; D. K., Shenoy; Dalcanale, Enrico; Y. R., Shen. - In: CHEMICAL PHYSICS LETTERS. - ISSN 0009-2614. - 381:3-4(2003), pp. 322-328. [10.1016/j.cplett.2003.09.090]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11381/1452460
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