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This approach greatly expands the material systems for triboelectric nanogenerators.
This work suggests a composite strategy for developing bioactive, 3D material systems for tendon tissue engineering.
Various middle- and high-permittivity dielectric material systems for LTCC were examined.
Optical excitation transfer in nanostructured matter has been intensively studied in various material systems for versatile applications.
The major studies being directed toward elaborate designs of highly functionalized material systems for many-faceted prospective applications.
Carbon-based anodes such as graphite, 3D graphene sheets, carbon nanotubes (CNTs), and CNT pillared graphene have all been demonstrated as feasible material systems for lithium-ion batteries23,24,25,26.
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Rogalski, R. & Martyniuk, P. InAs/GaInSb superlattices as a promising material system for third generation infrared detectors.
Polysilicon was chosen as the material system for this study as it allows the use of a low source barrier for high currents and maximum self-heating.
Phase-change memory (PCM) material is the promising material system for nonvolatile-memory technology.
The present work deals with developing a HA coated Mg alloy material system for application in orthopaedic implants.
Altogether, this data indicates these hydrogels exhibit tunable degradation rates and provide a powerful material system for tissue engineering.
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