Direct laser writing and pyrolysis at high temperature.
Strong lightweight and recoverable three dimensional ceramic nanolattices.
Hollow tube alumina nanolattices were fabricated using two photon lithography.
Greer1 2 ceramics have some of the highest strength and stiffness to weight ratios of any material but are suboptimal for use as structural materials because of their brittleness and sensitivity to flaws.
Ceramic metal or composite material nanolattices are formed by post treatment of the polymer templates with techniques including pyrolysis atomic layer deposition electroplating and electroless plating.
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Strong lightweight and recoverable three dimensional ceramic nanolattices.
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2014 strong lightweight and recoverable three dimensional ceramic nanolattices.
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The smallest characteristic size of the nanolattices.
A long standing challenge in modern materials manufacturing and design has been to create porous materials that are simultaneously lightweight strong stiff and flaw tolerant.
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To produce nanolattice materials polymer templates are manufactured by high resolution 3d printing processes such as multiphoton lithography or by self assembly techniques.
Strong lightweight and recoverable three dimensional ceramic nanolattices meza lucas r.
Strong lightweight and recoverable three dimensional ceramic nanolattices by lucas r.
Strong lightweight and recoverable three dimensional ceramic nanolattices lucas r.
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Here we fabricated pyrolytic carbon nanolattices with designable topologies by a two step procedure.
Hollow tube alumina nanolattices composed of nanoscale ceramic through hybrid technique including tpa atomic layer.
Greer1 2 ceramics have some of the highest.