By Vijay Kumar, Susheel Kalia, Hendrik C. Swart (eds.)
This publication offers a finished survey approximately carrying out polymers and their hybrids with diversified fabrics. It highlights the themes pertinent to investigate and improvement in academia and within the undefined. The e-book therefore discusses the instruction and characterization of those fabrics, in addition to fabrics houses and their processing. the present demanding situations within the box are addressed, and an overview on new or even futuristic ways is given.
“Conducting Polymer Hybrids” is worried with a desirable classification of fabrics with the promise for wide-ranging functions, together with power iteration and garage, supercapacitors, electronics, show applied sciences, sensing, environmental and biomedical functions. The e-book covers a wide number of platforms: one-, two-, and three-dimenstional composites and hybrids, combined at micro- and nanolevel.
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Additional info for Conducting Polymer Hybrids
Ion sensing of CPCs is based on the catalytic activity of chemical groups on CPCs with special ions. Many studies have been reported for the detection of nitrite ion (NO2) [157–160]. For instance, Liu et al.  reported a Poy(3,4-ethylenedioxythiophene)/GO modiﬁed Au electrode with the notable catalytic ability for NO2. 4 Stretchable Conductor Conventional materials used for electrical devices like electrodes are metals or other rigid materials which will be crack and broken when highly stretched.
Unchanged when UHMWPE crystallites are melted. Moreover, the ultrahigh melt viscosity of the UHMWPE matrix also hindered the arrangement of the CB particles in the polymer melt. Therefore, the fluctuated CB structure was stabilized at elevated temperatures, thus eliminated the NTC effect. More similar results were reported by different groups [139–141]. 2 Strain Sensor Strain sensing based on CPCs has been widely investigated for movement measurement, health monitoring, and wearable electronics.
Muñoz-Bonilla et al. catalysis, data storage, environmental remediation separation, puriﬁcation, and biomedical uses [1–4]. For many of these applications, the synthesis of uniformly sized nanoparticles is of key importance, because their electrical, optical, and magnetic properties depend strongly on their dimensions. In recent years the preparation of hybrid nanocomposites with both magnetic and electrical properties has received a great attention in industrial and academic ﬁelds. For instance, nanocomposites based on conducting polymers and magnetic nanoparticles are one of the most widely studied materials for microwave absorbing and electromagnetic shielding.