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To do that, they created a unique "planar" antenna that provides the range and directionality of a larger parabolic antenna in a fraction of the space.
Two-dimensional materials have important research significance in the future electronics and optoelectronics because of their unique planar advantages, quantum confinement effect, and lack of interlayer interference.
Due to its unique planar morphology, GnP may offer higher thermal contact area to minimize the thermal resistance especially at low loading levels, enabling much higher thermal conductivity to be attained in comparison to buckeytube carbon-based structures [65,70].
Although activated carbon shows a higher maximum capacitance than that of graphene nanosheets (GNSs) in a conventional organic electrolyte, the latter material, characterized by high conductivity and a unique planar structure, is more suitable for use in an ionic liquid (IL) electrolyte for supercapacitors.
The "loops" of S are planar faces of the unique planar embedding of the secondary structure graph (whose edges are the base pairs in S together with the backbone edges (i, i + 1), i = 1..., n - 1).
Desketoraloxifene (10) was developed by Eli Lilly in the late 90s as a raloxifene analogue that lacked the important carbonyl hinge in the parent molecule, thus leading to a SERM with unique, planar topology.
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Directed by different solvent-coordinated trivalent terbium metal cations, 1 shows a 1-D anionic helical chain architecture; 2 exhibits a 1-D anionic zigzag chain with hexanuclear [W3S12Ag3]3− repeated units; 3 possesses another kind of 1-D anionic zigzag chain with the unique nonanuclear planar square-like [W4S16Ag5]3− repeated units.
Displaying a unique trigonal planar (C2N) zinc geometry within the series, 1 exhibits the most downfield CH2 (Et) signal of all at δ=8.99 ppm.
All crystalline materials have a unique set of planar spacings (d) and thus the distribution of measured photon energies and corresponding diffraction angles describe uniquely the chemical composition of the crystalline sample.
In particular, because of its unique two-dimensional planar architecture, as well as the possession of numerous oxygenated functionalities, GO has emerged as a promising building block for high-performance nano-fluidic ion channels.
The flakes are optically active at room temperature, in the technologically important near-infrared spectral range between 1 and 0.8 μm, thus offering unique opportunities for planar device architectures and near-infrared optical sensing.
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