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Yang et al. reported fabrication method based on simple electrodeposition method [64].
We present a rapid and low-temperature polymer fabrication method based on the direct patterning by UV light.
As shown in Fig. 14, they proposed fabrication method based on silica-protective-layer for maximizing Fe Nx active sites in catalysts.
Albero et al. [43] proposed a novel microlens wafer-scale fabrication method based on isotropic wet etching technology, shown in Figure 7.
Reported fabrication method based on sandblasting, etching and spray coating is easily applicable to various surfaces ranging from metals, ceramics, to plastics and is scalable to large surfaces.
The fabrication method based earth-rich precursors provides a large-scale synthesis route to synthesize anode materials for lithium ion batteries with superior electrochemical performance.
The fabrication method, based on an electrodeposition phenomenon, shows significant advantages over current solutions as implants can now be obtained rapidly at any required dimensions.
To address these problems, this study reported a novel scaffold fabrication method based on self-developed vane extruder, which applies global dynamic elongational flow to the polymer compounds.
To isolate the effect of doping from those of morphology and crystallinity, we devise a fabrication method based on radio-frequency magnetron sputtering yielding crystalline hematite at room temperature, thus enhancing the compatibility towards substrates and the potential for application.
In this paper we investigate the feasibility of using a cost-effective fabrication method based on sandblasting, chemical etching and spray coating processes, to render common surfaces to be non-wettable by Galinstan®.
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Fabrication methods based on emulsification and nano-precipitation cannot control these features precisely and independently over multiple scales.
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