Beyond Moore’s law to more than Moore in stretchable electronics
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Gloria M. D’Amaral
, Hannah R. Jessop und Tricia Breen Carmichael
Abstract
Over the past two decades, the field of stretchable electronics has advanced from initial ideas exploring the mechanics of simple metal-on-elastomer structures to complex, soft, and wearable technologies with applications in human health, robotics, energy storage, and more. This chapter acquaints the reader with this exciting and fastpaced field, focusing on the innovative design elements developed over the years to endow functional materials with stretchability. These design elements are divided into two philosophies: Structures that stretch uses intentional architectural designs-from simple wavy structures to highly complex hierarchical arrangements-that convert stretching strains into non-destructive bending strains. Materials that stretch takes a materialsbased approach to produce intrinsically stretchable functional materials through compositing or molecular engineering. This chapter provides the reader with the fundamental information necessary to understand the latest exciting developments in the field.
Abstract
Over the past two decades, the field of stretchable electronics has advanced from initial ideas exploring the mechanics of simple metal-on-elastomer structures to complex, soft, and wearable technologies with applications in human health, robotics, energy storage, and more. This chapter acquaints the reader with this exciting and fastpaced field, focusing on the innovative design elements developed over the years to endow functional materials with stretchability. These design elements are divided into two philosophies: Structures that stretch uses intentional architectural designs-from simple wavy structures to highly complex hierarchical arrangements-that convert stretching strains into non-destructive bending strains. Materials that stretch takes a materialsbased approach to produce intrinsically stretchable functional materials through compositing or molecular engineering. This chapter provides the reader with the fundamental information necessary to understand the latest exciting developments in the field.
Kapitel in diesem Buch
- Frontmatter I
- Contents V
- Beyond Moore’s law to more than Moore in stretchable electronics 1
- Cross-linking strategies for π-conjugated polymers in organic electronics 41
- Soft robotics: a futuristic extension of stretchable electronics technology 73
- Stretchable photodetectors and image sensors 105
- Engineering applications of materials and structures derived from stretchable electronics 135
- Stretchable electronics: the next generation of emerging applications 165
- Abbreviations 169
- Mathematical symbols 171
- Index 173
Kapitel in diesem Buch
- Frontmatter I
- Contents V
- Beyond Moore’s law to more than Moore in stretchable electronics 1
- Cross-linking strategies for π-conjugated polymers in organic electronics 41
- Soft robotics: a futuristic extension of stretchable electronics technology 73
- Stretchable photodetectors and image sensors 105
- Engineering applications of materials and structures derived from stretchable electronics 135
- Stretchable electronics: the next generation of emerging applications 165
- Abbreviations 169
- Mathematical symbols 171
- Index 173