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- W2268638229 abstract "Fractal metallic dendrites have been drawing more attentions recently, yet they have rarely been explored in electronic printing or packaging applications because of the great challenges in large-scale synthesis and limited understanding in such applications. Here we demonstrate a controllable synthesis of fractal Ag micro-dendrites at the hundred-gram scale. When used as the fillers for isotropically electrically conductive composites (ECCs), the unique three-dimensional fractal geometrical configuration and low-temperature sintering characteristic render the Ag micro dendrites with an ultra-low electrical percolation threshold of 0.97 vol% (8 wt%). The ultra-low percolation threshold and self-limited fusing ability may address some critical challenges in current interconnect technology for microelectronics. For example, only half of the laser-scribe energy is needed to pattern fine circuit lines printed using the present ECCs, showing great potential for wiring ultrathin circuits for high performance flexible electronics." @default.
- W2268638229 created "2016-06-24" @default.
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- W2268638229 date "2015-09-03" @default.
- W2268638229 modified "2023-10-01" @default.
- W2268638229 title "Fractal dendrite-based electrically conductive composites for laser-scribed flexible circuits" @default.
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- W2268638229 doi "https://doi.org/10.1038/ncomms9150" @default.
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