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This book is an overview of the strategies to generate high-quality films of one-dimensional semiconductor nanostructures on flexible substrates (e.g., plastics) and the use of them as building blocks to fabricating flexible devices (including electronics, optoelectronics, sensors, power systems). In addition to engineering aspects, the physics and chemistry behind the fabrication and device operation will also be discussed as well. Internationally recognized scientists from academia, national laboratories, and industries, who are the leading researchers in the emerging areas, are contributing exceptional chapters according to their cutting-edge research results and expertise. This book will be an on-time addition to the literature in nanoscience and engineering. It will be suitable for graduate students and researchers as a useful reference to stimulate their research interest as well as facilitate their research in nanoscience and engineering.
Considers the physics and chemistry behind fabrication and device operation
Discusses applications to electronics, optoelectronics, sensors and power systems
Examines existing technologies and investigates emerging trends
Yugang Sun received B.S. and Ph.D. degrees in chemistry from the University of Science and Technology in China. He currently works at the Argonne National Laboratory, Center for Nanoscale Materials, Argonne, IL, USA. John A. Rogers, obtained BA and BS degrees in chemistry and in physics from the University of Texas,
Mechanics of Flexible DevicesBendable Electronics Based on Single-Crystal Organic Nanowires/NanoplatesBendable Electronics/ Optoelectronics Based on Organic Nanowires/ Nanoribbons Synthesized via Chemical ApproachesBendable Electronic Based on Inorganic Nanowire/ Nanoribbons Derived from Semiconductor WafersBendable Electronics Based on Single-Walled Carbon NanotubesTransparent, Bendable Electronics Based on High Band-Gap Semiconductor NanowiresStretchable Electronics/ OptoelectronicsFlexible Sensors Based on Arrayed Semiconductor NanowiresFlexible Sensors Based on Single-Walled Carbon NanotubesFlexible Solar Cells Based on Nanorods/Quantum Dots on Plastic SubstratesGenerator Based on ZnO Nanowires Arrays on Plastic Substrates
John A. Rogers, Hong H. Lee, Korea) Rogers, John A. (Seoul National University, USA) Lee, Hong H. (University of Illinois at Urbana/Champaign, John A Rogers, Hong H Lee