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Kim, J. Y. et al. Hybrid polymer microlens arrays with high numerical apertures fabricated using simple ink-jet printing technique.
Well-aligned ZnO nanorod arrays with high aspect ratio have been grown on FTO substrate by hydrothermal process.
High reaction sites of nanotube arrays with high surface area promoted the diffusion of charge carriers to the electrolyte.
Conductive and elastic hydrogel-based microelectronic arrays with high current-injection density and low interfacial impedance with tissue enable the localized low-voltage electrical stimulation of the sciatic nerve in live mice.
This study provides a strategy for the rational design of hierarchically structured, well-oriented MOFs and derivative arrays with high electrochemical performance and mechanical flexibility.
Antenna arrays with high directivity and low side lobe levels need to be designed for increasing the efficiency of communication systems.
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Experimental study shows that the proposed algorithm GPR produces target arrays with higher harvest and lower degradation on the host arrays with fault density no more than 5%.
We show that a lower hydrogen concentration during synthesis results in the growth of stiffer CNT arrays with higher average bulk density.
Essential improvement of the cost/performance ratio would be achieved by microbolometer arrays with higher sensitivity, since this allows the use of simpler and less costly camera optics, which implies a lower cost of the complete IR camera.
As future work, we intend to extend these results to arrays with higher dimensions and compute all maximal subsequences in a given interval.
In addition, our observation in Fig. 6b, the AgNR arrays with higher nanorod density (fabricated at low substrate temperature) showed lower E.F. than the films with lower density (fabricated at high temperature), also contradicts the first scenario based on the hot spot mechanism.
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