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Electric field-induced birefringence is the basis for many device applications of conventional liquid crystals.
Physical properties of transition metal silicides are intensively investigated for their potential usefulness in many device applications.
Synthesis of new conducting polymers is desired since their electrochemical and optical properties enable them to be used as active layers in many device applications.
In addition, graphene is a semimetal with zero bandgap which is the major obstacle limiting its utilization for many device applications that need variable electronic bandgap [11].
Associated with the large bandgap as well as the chemical and physical stability, AlN NWs have advantages in many device applications such as deep ultraviolet lasers [1], photovoltaic devices [2], and optical sensors [3].
It has been proven that the material properties are suitable for many device applications such as laser sources emitting at 1.3 to 1.55 μm, detector, and optical amplifiers for fiber-optic communication systems[3 5].
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Materials like metal, wood, ceramics, glass, and plastics are used in many medical device applications.
It may include many devices and applications and has the characteristics of general wireless sensor networks.
Zypr's API is designed to simplify device connectivity to the many devices and applications we use on a daily basis, including in-vehicle entertainment, tablets, TVs, and smartphone apps, aggregating them in a single portal, under a single account.
Piezoelectric ceramic/polymer composites are important smart materials that have found many sensor and mechatronic device applications.
In order to realize graphene-based nanoelectronic device applications, many research groups tried to open the energy bandgap in the gapless linear dispersion in different ways, for instance, graphene nanoribbons[5, 6] and bilayer graphene applied by the electric field[7 9].
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