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A stirred cell is used to obtain stable interface between the organic and aqueous phases.
The possibility of compatibility of the cloudlet and mobile devices is increased by a stable interface between the host and guest [5].
Designing a well-defined and stable interface between biomolecules and semiconductor surfaces is of great importance for current and future biosensing and bioelectronic applications.
The quiescent growth, which was handled to a lesser extent, introduces a stable interface between the silica and water phases, the stability of which depends on the partial miscibility between hydrophobic silica source and hydrophilic water phase.
In addition to the selection of suitable dielectric material, stable interface between different components also plays a critical role as minute interfacial sliding or delamination may lead to catastrophic failure of the entire device.
Biphasic composite scaffolds manufactured by image-based design and solid free-form fabrication are used to simultaneously generate bone and cartilage in discrete regions and provide for the development of a stable interface between cartilage and subchondral bone.
In designing modern microelectronic and sensing devices based on biological molecules, the underlying scientific questions focus on the ability to form a well-defined and stable interface between biological molecules and the base of electrical devices.
To obtain a thermally stable interface between SiC and F82H, a proper diffusion barrier that not only suppresses the intense interfacial reaction but also reduces the residual stress between them is necessary, and three low activation materials of Si, Cr, and W for this purpose were evaluated in this paper.
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Here we review the state-of-the art in nanobioelectronics, emphasizing the characterization and design of stable interfaces between nanoscale devices and cells.
Comparison of the subunit composition of these sub-complexes implies highly stable interfaces between both isoforms of U1-70k with Sm-D1 and Sm-D2.
AuNP can be introduced to mixed monolayers of aryldiazonium salt modified GC electrodes by Au C bonding through aryldiazonium salt chemistry, which provides a stable interface showing efficient electron transfer between biomolecules and electrodes.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com