L Dai, AWH Mau - Advanced Materials, 2001 - Wiley Online Library
Composites of C60 fullerene and carbon nanotubes with polymers are attractive for a wide range of applications. The combination of the unique physicochemical and optoelectronic …
Y Gao, HL Yip, KS Chen, KM O'Malley, O Acton… - Advanced …, 2011 - infona.pl
Surface doping of conjugated polymers is realized by depositing a thin layer of graphene oxide (GO) on top of the polymers. The high proton density and the unique 2D structure of …
In this critical review, the preparation methods, unique properties, and graphene oxide structure as well as graphene have been interpreted. Various aspects for the graphene …
H Qiu, M Wan, B Matthews, L Dai - Macromolecules, 2001 - ACS Publications
Nanotubes and/or nanowires are known to play an important role in optoelectronic nanodevices, ranging from single-molecular transistors1 and electron-emitting flat panel …
Z Wei, M Wan, T Lin, L Dai - Advanced Materials, 2003 - Wiley Online Library
Sulfonated multiwalled carbon nanotubes (MWNT‐(OSO3H) n) can act simultaneously as a dopant and template for the formation of conducting polyaniline (PANI) nanostructures. By …
J Liu, Y Xue, L Dai - The journal of physical chemistry letters, 2012 - ACS Publications
In this study, we have rationally designed and successfully developed sulfated graphene oxide (GO–OSO3H) with− OSO3H groups attached to the carbon basal plane of reduced GO …
Senkrecht auf einer Oberfläche angebrachte Kohlenstoff-Nanoröhren werden als Elektroden für die Bildung leitfähiger Polymer-Kohlenstoff-Nanoröhren (Nanodrähte) verwendet. Die …
KR Reddy, KP Lee, AI Gopalan, MS Kim… - Journal of Polymer …, 2006 - Wiley Online Library
Composites of multiwall carbon nanotubes (MWCNTs) and sulfonated polyaniline (SPAN) were prepared through the oxidative polymerization of a mixture of aniline, 2, 5 …
Nanostructured conducting polymeric materials are of exceptional interest due to their potential applications in sensors, actuators, transistors and displays. Arguably the most …