2004
DOI: 10.1557/jmr.2004.19.3.716
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Nanomechanical Probing of Layered Nanoscale Polymer Films With Atomic Force Microscopy

Abstract: The approach developed for the microindentation of layered elastic solids was adapted to analyze atomic force microscopy probing of ultrathin (1-100 nm-thick) polymer films on a solid substrate. The model for analyzing microindentation of layered solids was extended to construct two-and tri-step graded functions with the transition zones accounting for a variable gradient between layers. This "graded" approach offered a transparent consideration of the gradient of the mechanical properties between layers. Seve… Show more

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Cited by 96 publications
(67 citation statements)
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“…The compliance of the spherical bead indenter was assumed to be much smaller compared with the other two right-hand side terms and was omitted from analysis. The model accounts for the transfer of mechanical deformation between the two layers, i.e., the glycocalyx and the cell, by the term exp(Ϫ␣␦/␦ g ) (20). This transfer function is dependent on the ␦, the ␦ g , and the extent of interlayer interactions, which are dependent on the local composition of glycocalyx.…”
Section: Resultsmentioning
confidence: 99%
“…The compliance of the spherical bead indenter was assumed to be much smaller compared with the other two right-hand side terms and was omitted from analysis. The model accounts for the transfer of mechanical deformation between the two layers, i.e., the glycocalyx and the cell, by the term exp(Ϫ␣␦/␦ g ) (20). This transfer function is dependent on the ␦, the ␦ g , and the extent of interlayer interactions, which are dependent on the local composition of glycocalyx.…”
Section: Resultsmentioning
confidence: 99%
“…Data collected were processed using an MMA software package developed in our lab which provides means for calculation of localized elastic modulus [42][43][44]. The loading curves, the elastic modulus, reduced adhesive forces, and surface histograms of elastic moduli and adhesive forces were obtained from experimental images as described elsewhere on many occasions [20,21,43].…”
Section: Methodsmentioning
confidence: 99%
“…3a). [20][21][22] Several fish cupula in their folded state were chosen for the mechanical testing (Fig. 3b).…”
mentioning
confidence: 99%
“…All AFM and SFS measurements were performed using a Multimode, Nanoscope IIIa microscope with a Picoforce module and a Dimension 3000, Nanoscope IIIa microscope in accordance with well-established procedures (Cappella & Dietler 1999;LeMieux et al 2003, Kovalev et al 2004.…”
Section: Sfs: Hair Deflection Measurementsmentioning
confidence: 99%