http://rdf.ncbi.nlm.nih.gov/pubchem/patent/EP-2542628-A1

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assignee http://rdf.ncbi.nlm.nih.gov/pubchem/patentassignee/MD5_3a347c2939ec43a4060054df1526348f
classificationCPCInventive http://rdf.ncbi.nlm.nih.gov/pubchem/patentcpc/C09D11-00
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classificationIPCInventive http://rdf.ncbi.nlm.nih.gov/pubchem/patentipc/C09D1-00
filingDate 2011-01-20-04:00^^<http://www.w3.org/2001/XMLSchema#date>
inventor http://rdf.ncbi.nlm.nih.gov/pubchem/patentinventor/MD5_aa5d1a4161e363141c51400a97c8f3dc
publicationDate 2013-01-09-04:00^^<http://www.w3.org/2001/XMLSchema#date>
publicationNumber EP-2542628-A1
titleOfInvention Large-area transparent conductive coatings including doped carbon nanotubes and nanowire composites, and mehtods of making the same
abstract Certain example embodiments of this invention relate to large-area transparent conductive coatings (TCCs) including carbon nanotubes (CNTs) and nanowire composites, and methods of making the same. The σ dc /σ opt ratio of such thim films may be improved via stable chemical doping and/or alloying of CNT-based films. The doping and/or alloying may be implemented in a large area coating system, e.g., on glass and/or other substrates. In certain example embodiments, a CNT film may be deposited and then doped via chemical functionalization and/or alloyed with silver and/or palladium, Both p-type and n-type dopants may be used in different embodiments of this invention. In certain example embodiments, silver and/or other nanowires may be provided, e.g., to further decrease sheet resistance. Certain example embodiments may provide coatings that approach, meet, or exceed 90% visible transmission and 90 ohms/square target metrics.
priorityDate 2010-03-04-04:00^^<http://www.w3.org/2001/XMLSchema#date>
type http://data.epo.org/linked-data/def/patent/Publication

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Total number of triples: 30.