9 Chapter 9Figure 9.1 Schematic illustration of pyroresistive curve, including PTC effe...Figure 9.2 Schematic of percolation behavior of conductive polymer composite...Figure 9.3 Schematic of how a reduction in filler size or an increase in fil...Figure 9.4 Schematic of dispersion and distribution effect of fillers on the...Figure 9.5 (a) Temperature dependence of electrical resistivity of the nanoc...Figure 9.6 The dependence of PTC phenomenon on crystallinity of different sy...Figure 9.7 (a) Temperature–resistivity relationship of the CB/PP/UHMWPE comp...Figure 9.8 (a) A flexible wireless temperature sensor based on Ni microparti...Figure 9.9 (a) Secondary thermoplastic elastomeric (TPE) phase filled HDPE/G...
10 Chapter 10Figure 10.1 Schematic representation of EMI shielding mechanism.Figure 10.2 Schematic representation of the percolation phenomenon in polyme...Figure 10.3 Dispersion of the same amount of conducting filler in (a) single...Figure 10.4 Schematic representation showing the selective localization of f...Figure 10.5 Schematic diagram representing EMI shielding mechanism in a PTT/...Figure 10.6 The dielectric properties of PP/NR/MWCNTs composites.Figure 10.7 Volume conductivity of recycled epoxy composites with carbon nan...Figure 10.8 EMI shielding effectiveness of (a) PTT/PP blends with 1 wt% CNT,...
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2 Table of Contents
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Polymer Nanocomposite Materials
Applications in Integrated Electronic Devices
Edited by
Ye Zhou Guanglong Ding

Editors
Ye ZhouShenzhen University Institute for Advanced Study Room 358, Administration Building 518060 Shenzhen China
Guanglong DingShenzhen University Institute for Advanced Study Room 400-3, College of EST 518060 Shenzhen China
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Polymer nanocomposites combining the merits of polymers (e.g. light weight, flexibility, low cost) and functional properties of nanomaterials caused by small size effect, quantum size effect, and surface/boundary effect show adjustable optical, electrical, biological, and mechanical characteristics and attract extensive researches. Various polymer nanocomposites with amazing performances have been prepared and utilized for developing integrated electronic devices in a number of emerging areas and exhibit huge commercial value, thanks to their simple preparation techniques and countless combinations. This book highlights the recent researches about the basic conceptions, preparation/characterization techniques, properties, device design strategies, and intriguing applications of polymer nanocomposites. The existing/potential application prospects and challenges for the polymer nanocomposites are also discussed. We expect that this book can offer a well-timed assistance to the academic researchers in the rapidly expanding applications including environment, sensor, energy conversion/storage, biology, and information storage as a simple and convenience instrument.
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