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Flexible Polymer sentence examples within Highly Flexible Polymer
Our study provides the guidelines for the fabrication of inexpensive, flexible, and highly flexible polymer solar cells by interface tuning.
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To implement a highly flexible polymer solar cell (PSC), the mechanical properties of the material constituting the active layer are considered crucial, having a significant influence on the stability of the device.
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Flexible Polymer sentence examples within Developed Flexible Polymer
On the other hand, the developed flexible polymer-ceramic substrate materials and matching medium materials in this thesis, contribute to the ongoing research in the field of electronic materials, which indicates the possibility of customizing the dielectric materials and their dielectric properties and mechanical features to meet not only the requirements of a wearable electromagnetic imaging system, but also other RF and microwave applications.
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This paper describes the evaluation of an advanced substrate designed with a newly developed flexible polymeric material by spray coating, for use in an innovative additive laser structuring process, called Laser Induced Metallization (LIM).
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Flexible Polymer sentence examples within Investigated Flexible Polymer
To achieve fully flexible microwave devices, we investigated flexible polymers in terms of chemical, mechanical, and electrical properties.
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To achieve fully flexible microwave devices, we investigated flexible polymers in terms of chemical, mechanical, and electrical properties.
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Flexible Polymer sentence examples within Using Flexible Polymer
Flexible Polymer sentence examples within Conventional Flexible Polymer
A bendable metal (Hastelloy), which has both bendability and compatibility with various oxide layers, allows high-temperature processes for crystallization; therefore it is far superior as a substrate than a conventional flexible polymer.
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In this paper, a novel composite material of Silver nanowire aerogel(AgNWA) and conventional flexible polymer, such as PDMS, PI or other flexible polymers, is proposed to fabricate flexible sensors.
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Flexible Polymer sentence examples within Printed Flexible Polymer
Flexible Polymer sentence examples within flexible polymer substrate
Taken together, the porous LIG electrodes might be utilized for electrochemical removal of emerging contaminants in multiple applications because they can be rapidly formed on flexible polymer substrates at low cost.
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We describe a novel solid state crystallisation method for optimising a thin film transparent conductive oxide when deposited on flexible polymer substrates.
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Flexible Polymer sentence examples within flexible polymer chain
Flexible Polymer sentence examples within flexible polymer composite
This study focuses on the fabrication and characterization of vermiculite-filled flexible polymer composites.
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Flexible polymer composite films comprising carboxymethyl cellulose (CMC), polyaniline (PANI) and silver nanoparticles (AgNps) were successfully fabricated through an in-situ polymerization method.
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Flexible Polymer sentence examples within flexible polymer matrix
The two facilities are attributed to Joule heat generated by tunnel currents between adjacent short carbon fillers in flexible polymer matrixes under low voltage.
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Using flexible polymer matrix combining with conductive ceramics filler is a convenient and effective strategy to integrate high ion conductivity into flexibility.
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Flexible Polymer sentence examples within flexible polymer electrolyte
This article reports on a flexible polymer electrolyte membrane fuel cell (PEMFC) with a pre-bent flow field.
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The fabrication of flexible polymer electrolytes (PEs) which possess simultaneously high thermal stability, robust mechanical strength, and high ionic conductivity is very challenging for lithium (Li) batteries.
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Flexible Polymer sentence examples within flexible polymer material
This study used flexible polymer materials in large-area roll printing to control the curvature feature size of the microstructure mold array of polydimethylsiloxane (PDMS) through system-developed equipment and gas-assisted molding processing.
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Flexible polymer materials are highly recommended for sensor applications like strain, pressure, force and deformation measurements.
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Flexible Polymer sentence examples within flexible polymer film
The technology allows for integrating ultra-thin chips and widely distributed electronic components, such as sensors, microcontrollers or antennas, in thin flexible polymer film, using CMOS-compatible equipment and processing.
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Currently, most of the flexible LC pressure sensors have low sensitivity because of the high Young’s modulus of the dielectric properties (such as PDMS) and the inflexible polymer films (as the substrate of the sensors), which don’t have excellent stretchability to conform to arbitrarily curved and moving surfaces such as joints.
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Flexible Polymer sentence examples within flexible polymer solar
Our study provides the guidelines for the fabrication of inexpensive, flexible, and highly flexible polymer solar cells by interface tuning.
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To implement a highly flexible polymer solar cell (PSC), the mechanical properties of the material constituting the active layer are considered crucial, having a significant influence on the stability of the device.
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Flexible Polymer sentence examples within flexible polymer membrane
Lightweight, long lifetime, and flexible polymer membrane-based structures, which are tightly folded on the ground and then unfolded in space, suffer from repeated bending before launching and fatal erosion on exposure to atomic oxygen (AO) in a low Earth orbit (LEO).
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These 3D networks embedded into flexible polymer membranes are also planar and lightweight.
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Flexible Polymer sentence examples within flexible polymer nanocomposite
In this study, conductive flexible polymer nanocomposites were prepared by combination of solvent casting and compression molding by using SEBS matrix with conductive fillers including carbon black (CB), vapor grown carbon nanofibers (VGCNFs), and their mixtures (CB:VGCNF, 1:1) at various filler loadings from 0.
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Flexible polymer nanocomposites using polydimethylsiloxane (PDMS) and multiwalled carbon nanotube (MWCNT) are gaining importance in the field of electronics as sensor, electromagnetic interference (EMI) shielding, antenna and other materials in devices.
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Flexible Polymer sentence examples within flexible polymer stent
An individualized 3D-printed flexible polymer stent was also implemented for a 16-year-old boy who presented with esophageal stricture following ingestion of corrosive chemicals.
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To effectively reduce/overcome these complications, we designed a tubular, flexible polymer stent with spirals.
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Flexible Polymer sentence examples within flexible polymer model
Flexible Polymer sentence examples within flexible polymer light
However, system-level integration of ultraflexible optical sensors with power sources is challenging because of insufficient air operational stability of ultraflexible polymer light-emitting diodes.
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Centimeter-size, flexible polymer light emitting diodes are fabricated using a nickel-doped silver based electrode, and the devices exhibit 30% enhanced current efficiencies compared to their ITO counterparts, invariant emission spectra at large viewing angles, and operational stability over 1200 bending circles.
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Flexible Polymer sentence examples within flexible polymer foam
Superhydrophobic surfaces are imperative in flexible polymer foams for diverse applications; however, traditional surface coatings on soft skeletons are often fragile and can hardly endure severe deformation, making them unstable and highly susceptible to cyclic loadings.
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The structure and morphology of the prepared flexible polymer foams with different content of ZnO nanofiller (1, 2, 5 and 10 wt% related to the polymer) were studied by Fourier transform infrared spectroscopy (FTIR) and Scanning electron microscopy (SEM).
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Flexible Polymer sentence examples within flexible polymer backbone
XRD and DSC studies showed that the crystalline phase of the PVA–PEG blend polymer matrix decreases significantly with the content of NaNO3 salt, which favours highly flexible polymer backbone and hence providing high ionic conductivity of the polymer blend electrolyte films.
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In this study, HPLC separation efficiency was improved through the addition of branched amphiphilic glutamide lipids to the side chains of a terminally immobilized flexible polymer backbone.
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Flexible Polymer sentence examples within flexible polymer network
The review focuses on two main classes of hydrogels, described as semiflexible polymer networks that represent physically cross-linked fibrous hydrogels and flexible polymer networks representing the chemically cross-linked synthetic and natural hydrogels.
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In mammalian cells, the cytoskeleton is comprised of three interacting, semi-flexible polymer networks: actin, microtubules, and intermediate filaments (IF).
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Flexible Polymer sentence examples within flexible polymer device
Flexible Polymer sentence examples within flexible polymer brush
The glass transition and dynamics of densely grafted semiflexible polymer brushes are studied by molecular dynamics simulation.
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N-Isopropyl acrylamide (NIPA) and N-(3-aminopropyl)methacrylamide (APMA) were applied to graft flexible polymer brushes onto initiator-functionalized silica nanoparticles.
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Flexible Polymer sentence examples within flexible polymer dielectric
Flexible polymer dielectric capacitors are essential in the modern electrical field and have received extensive attention due to their ultrahigh power density.
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Flexible polymer dielectrics tolerant to electric field and temperature extremes are urgently needed for a spectrum of electrical and electronic applications.
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Flexible Polymer sentence examples within flexible polymer part
The metamaterials can be fabricated by a few rapid and simple steps: a flexible polymer part is three-dimensional printed and sprayed with a conductive coating.
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Hybrid silicon/polymer neural probes combine rigid silicon and flexible polymer parts into one single device and allow, for example, the precise integration of complex probe geometries, such as multishank designs, with flexible biocompatible cabling.
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Among the demonstrated effective approaches using bimetals or 3D porous structures, the porous laser-induced graphene (LIG) on flexible polymers showcases good conductivity and a simple fabrication process for the integration of sensing materials.
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Here, we prepared CDP composite materials with rigid bulk structure and flexible polymeric network through facile KMnO4 oxidation treatments of CDPs.
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The properties of semiflexible polymers tethered by one end to an impenetrable wall and exposed to oscillatory shear flow are investigated by mesoscale simulations.
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We investigate the motion of spherical nano-particles (NPs) grafted with flexible polymers that end with a nuclear localization signal peptide.
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In this work, we use computer simulations to study crowding-induced adsorption of semiflexible polymers on otherwise repulsive surfaces.
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Graphene has exceptionally good electrical and mechanical properties, and polyaniline is one of the best-conducting semi-flexible polymers.
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Blending polylactide (PLA) with flexible polymers is usually capable of reducing its inherent brittleness, which, however, is accompanied with a substantial decrease in tensile strength.
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For the fabrication of the ICP sensor, a novel freeze casting method was developed to encapsulate the liquid metal microstructures within thin and flexible polymers.
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Artificial cilia actuators are described as responsive and actuatable cilia‐structured arrays that are mainly made of flexible polymers.
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Besides, our new insight of drag reduction with flexible polymers can also explain why a maximum drag reduction in rotational flow appears before degradation happens.
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Hybrid Systems-in-Foil (HySiF) encompass large-area thin-film electronics and ultrathin, high performance CMOS chips, which are integrated into a flexible polymeric foil substrate.
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