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Fig. 1 Schematic of metamaterials composed of Ag nanodisks and a SiO2 spacer on Ag substrate.
The gemini surfactants with short spacer, on the other hand, showed a considerable micellar growth as the concentration was raised.
The optimal length of the translational spacer on the ribosome binding site was shown to be eight nucleotides.
To optimize the design of HG TFETs, the effect of variation in the length of the high-k spacer on I on has been investigated.
This paper systematically analyzes the influences of spacer dielectric (low-k or high-k dielectrics) in each spacer on DGTFET DRAM and proposes an optimized spacer engineering.
The unit cell of metamaterials consists of a graphene monolayer sandwiched between four Ag nanodisks with different diameters and a SiO2 spacer on an Ag substrate.
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These experimental results have also demonstrated the very important effect of tube spacers on the hydrodynamics.
The final design included cross flow with twin wall polypropylene plastics and spacers on the evaporation side only.
Such a chemistry yields a full selectivity versus SiO2 (isolation) and Si3N4 (sidewall spacers) on patterned wafers with gate stacks.
The electrochemical studies reveal the effect of spacers on the Donor-Acceptor (D-A) interactions and electronic energy levels.
Different designs were constructed and tested which varied from counter flow to cross flow with spacers and without spacers on the evaporation and/or dewformation sides.
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