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221.
Guillot P Panizza P Salmon JB Joanicot M Colin A Bruneau CH Colin T 《Langmuir : the ACS journal of surfaces and colloids》2006,22(14):6438-6445
In this work, a viscosimeter implemented on a microfluidic chip is presented. The physical principle of this system is to use laminar parallel flows in a microfluidic channel. The fluid to be studied flows side by side with a reference fluid of known viscosity. By using optical microscopy, the shape of the interface between both fluids can be determined. Knowing the flow rates of the two liquids and the geometrical features of the channel, the mean shear rate sustained by the fluid and its viscosity can thus be computed. Accurate and precise measurements of the viscosity as a function of the shear rate can be made using less than 300 microL of fluid. Several complex fluids are tested with viscosities ranging from 10(-)(3) to 70 Pa.s. 相似文献
222.
Danelon C Perez JB Santschi C Brugger J Vogel H 《Langmuir : the ACS journal of surfaces and colloids》2006,22(1):22-25
We present a method for spreading large (>100 microm(2)) cell membrane fragments across nanoapertures in planar supports. Electron-beam and focused-ion-beam lithography were used to fabricate arrays of 50-600 nm diameter holes in free-standing silicon nitride (SiN) solid films 100-500 nm thick. By pressing adhering live cells onto the nanostructured SiN surface and then removing them, planar cell membrane sheets (CMSs) were transferred in a well-defined orientation onto the SiN support. We demonstrate the accessibility to both extracellular and intracellular surfaces of CMSs by targeting membrane constituents side-specifically with fluorescent markers. Our approach is of interest for studying ligand-receptor interactions using optical, electrical, and scanning probe techniques at the single-molecule level. 相似文献
223.
Barrett R Faucon M Lopez J Cristobal G Destremaut F Dodge A Guillot P Laval P Masselon C Salmon JB 《Lab on a chip》2006,6(4):494-499
This work describes the fabrication of thin microfluidic devices in Kapton (polyimide). These chips are well-suited to perform X-ray scattering experiments using intense microfocussed beams, as Kapton is both relatively resistant to the high intensities generated by a synchrotron, and almost transparent to X-rays. We show networks of microchannels obtained using laser ablation of Kapton films, and we also present a simple way to perform fusion bonding between two Kapton films. The possibilities offered using such devices are illustrated with X-ray scattering experiments. These experiments demonstrate that structural measurements in the 1 A-20 nm range can be obtained with spatial resolutions of a few microns in a microchannel. 相似文献
224.
Romanenko KV Py X d'Espinose de Lacaillerie JB Lapina OB Fraissard J 《The journal of physical chemistry. B》2006,110(7):3055-3060
(129)Xe NMR has been used to study a series of homologous activated carbons obtained from a KOH-activated pitch-based carbon molecular sieve modified by air oxidation/pyrolysis cycles. A clear correlation between the pore size of microporous carbons and the (129)Xe NMR of adsorbed xenon is proposed for the first time. The virial coefficient delta(Xe)(-)(Xe) arising from binary xenon collisions varied linearly with the micropore size and appeared to be a better probe of the microporosity than the chemical shift extrapolated to zero pressure. This correlation was explained by the fact that the xenon collision frequency increases with increasing micropore size. The chemical shift has been shown to vary very little with temperature (less than 9 ppm) for xenon trapped inside narrow and wide micropores. This is indicative of a smooth xenon-surface interaction potential. 相似文献
225.
226.
Jean-Baptiste Poly Gilles Raby 《Proceedings of the American Mathematical Society》1999,127(7):2091-2098
In this paper, we prove an extension theorem through closed subsets having small Haussdorff dimension, for positive currents whose boundary satisfies some growth condition. As a corollary, we get the classical Harvey's extension theorem for closed positive currents. Furthermore, we apply our result to study the boundary of holomorphic chains.
227.
The recent advances in the characterization of the surface structure of carbon black by scanning tunneling microscopy (STM) are reported. The atomic organization, at the surfaces of several carbon blacks, is well resolved by STM and a local paracrystalline structure model is proposed, where the distorted carbon layer and thus the unequal inter-layer distance are evidenced on the basis of the classical turbostratic stacking. The quantitative analysis of the STM image, which enables a quantitative assessment of the surface crystallinity and of the nanoscale roughness, is presented. 相似文献