Fabrication of Macroscopically Flexible and Highly Porous 3D Semiconductor Networks from Interpenetrating Nanostructures by a Simple Flame Transport Approach

0103 physical sciences 01 natural sciences
DOI: 10.1002/ppsc.201300197 Publication Date: 2013-07-15T07:52:49Z
ABSTRACT
Flexible, electrically conducting, high temperature stable ceramics with very porosities are fabricated from interpenetrated metal oxide nano-microstructures in a versatile manner novel flame transport synthesis approach. The Young's modulus of these networks can be tuned wool type to rubber like based on the density, and interconnections building blocks. Semiconducting behavior allows multifunctional applications electrical readout mechanical history. As service our authors readers, this journal provides supporting information supplied by authors. Such materials peer reviewed may re-organized for online delivery, but not copy-edited or typeset. Technical support issues arising (other than missing files) should addressed Please note: publisher is responsible content functionality any Any queries content) directed corresponding author article.
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