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Fundamentals and Supercapacitor Applications of 2D Materials (Paperback): Chandra Sekhar Rout, Dattatray J. Late Fundamentals and Supercapacitor Applications of 2D Materials (Paperback)
Chandra Sekhar Rout, Dattatray J. Late
R4,458 Discovery Miles 44 580 Ships in 10 - 15 working days

Fundamentals and Applications of Supercapacitor 2D Materials covers different aspects of supercapacitor 2D materials, including their important properties, synthesis, and recent developments in supercapacitor applications of engineered 2D materials. In addition, theoretical investigations and various types of supercapacitors based on 2D materials such as symmetric, asymmetric, flexible, and micro-supercapacitors are covered. This book is a useful resource for research scientists, engineers, and students in the fields of supercapacitors, 2D nanomaterials, and energy storage devices. Due to their sub-nanometer thickness, 2D materials have a high packing density, which is suitable for the fabrication of highly-packed energy supplier/storage devices with enhanced energy and power density. The flexibility of 2D materials, and their good mechanical properties and high packing densities, make them suitable for the development of thin, flexible, and wearable devices.

Fundamentals and Sensing Applications of 2D Materials (Paperback): Chandra Sekhar Rout, Dattatray J. Late, Hywel Morgan Fundamentals and Sensing Applications of 2D Materials (Paperback)
Chandra Sekhar Rout, Dattatray J. Late, Hywel Morgan
R4,444 Discovery Miles 44 440 Ships in 10 - 15 working days

Fundamentals and Sensing Applications of 2D Materials provides a comprehensive understanding of a wide range of 2D materials. Examples of fundamental topics include: defect and vacancy engineering, doping and advantages of 2D materials for sensing, 2D materials and composites for sensing, and 2D materials in biosystems. A wide range of applications are addressed, such as gas sensors based on 2D materials, electrochemical glucose sensors, biosensors (enzymatic and non-enzymatic), and printed, stretchable, wearable and flexible biosensors. Due to their sub-nanometer thickness, 2D materials have a high packing density, thus making them suitable for the fabrication of thin film based sensor devices. Benefiting from their unique physical and chemical properties (e.g. strong mechanical strength, high surface area, unparalleled thermal conductivity, remarkable biocompatibility and ease of functionalization), 2D layered nanomaterials have shown great potential in designing high performance sensor devices.

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