High-throughput arrays for rapid characterization of solution-processable transparent conducting electrodes.

High-throughput arrays for rapid characterization of solution-processable transparent conducting electrodes.
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DOI:
10.1002/smll.201201330
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发表时间:
2012-12-21
期刊:
影响因子:
13.3
通讯作者:
Bettinger, Christopher J.
Bettinger, Christopher J.
中科院分区:
材料科学1区
文献类型:
--
作者:
Kustra, Stephen;Wu, Haosheng;Basu, Saurav;Rohde, Gustavo K.;Bettinger, Christopher J.

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Flexible cost-effective transparent conducting electrodes (TCE) are critically important components for next-generation technologies ranging from consumer electronics to clean energy.[1] In addition to replacing expensive mechanically brittle rare earth oxides such as indium tin oxide (ITO), flexible TCE have the potential to be compatible with large-volume manufacturing techniques such as roll-to-roll processing.[2] Electrically conducting nanomaterials serve as a cornerstone for many ITO alternatives. A variety of nanomaterial compositions have been pursued in many laboratories including silver nanowires (AgNW),[3–5] carbon nanotubes,[6, 7] graphene,[2, 8, 9] and copper.[10] Polymer-nanoparticle composites can increase the conductivity without impacting transmittance in TCE.[11] Hybrid metallic-polymer composites have also been explored in the context of highly ordered grid structures.[12] Active efforts focus on maximizing optical transmittance while maintaining sufficient electrical conductivity. These two key properties can be condensed
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