Graphene with an exceptional combination of electronic, optical and outstanding mechanical features has been proved to lead a completely different kind of 2-D electronics. The most exciting feature of graphene is its ...Graphene with an exceptional combination of electronic, optical and outstanding mechanical features has been proved to lead a completely different kind of 2-D electronics. The most exciting feature of graphene is its ultra-thin thickness, that can be conformally contacted to any kind of rough surface without losing much of its transparency and conductivity. Graphene has been explored demonstrating various prototype flexible electronic applications, however, its potentiality has been proven wherever transparent conductive electrodes(TCEs) are needed in a flexible, stretchable format. Graphene-based TCEs in flexible electronic applications showed greatly superior performance over their conventionally available competitor indium tin oxide(ITO). Moreover, enormous applications have been emerging, especially in wearable devices that can be potentially used in our daily life as well as in biomedical areas. However, the production of high-quality, defect-free large area graphene is still a challenge and the main hurdle in the commercialization of flexible and wearable products. The objective of the present review paper is to summarize the progress made so far in graphene-based flexible and wearable applications. The current developments including challenges and future perspectives arc also highlighted.展开更多
介绍了柔性可穿戴压电超声传感器压电层、背衬层、匹配层、封装层、电极层的结构设计和材料选择,论述了利用有限元分析(Finite Element Analysis,FEA)技术进行柔性可穿戴压电超声传感器模拟设计的优势,阐述了电极图案化等柔性可穿戴压...介绍了柔性可穿戴压电超声传感器压电层、背衬层、匹配层、封装层、电极层的结构设计和材料选择,论述了利用有限元分析(Finite Element Analysis,FEA)技术进行柔性可穿戴压电超声传感器模拟设计的优势,阐述了电极图案化等柔性可穿戴压电超声传感器制造领域中的关键技术,分析了柔性可穿戴压电超声传感器在深层组织成像、血流动力学监测、促进骨损伤恢复、辅助透皮给药等领域的应用情况。展望了柔性可穿戴压电超声传感器的发展方向,指出未来可通过应用高性能信号处理技术、改进超声探测成像算法、优化传感器结构设计方案等手段,进一步提升柔性可穿戴压电超声传感器的测量准确性、使用安全性和集成化程度,促进该类传感器市场化、产业化发展。展开更多
基金supported by the National Research Foundation of Korea(No.NRF-2015R1A3A2066337)
文摘Graphene with an exceptional combination of electronic, optical and outstanding mechanical features has been proved to lead a completely different kind of 2-D electronics. The most exciting feature of graphene is its ultra-thin thickness, that can be conformally contacted to any kind of rough surface without losing much of its transparency and conductivity. Graphene has been explored demonstrating various prototype flexible electronic applications, however, its potentiality has been proven wherever transparent conductive electrodes(TCEs) are needed in a flexible, stretchable format. Graphene-based TCEs in flexible electronic applications showed greatly superior performance over their conventionally available competitor indium tin oxide(ITO). Moreover, enormous applications have been emerging, especially in wearable devices that can be potentially used in our daily life as well as in biomedical areas. However, the production of high-quality, defect-free large area graphene is still a challenge and the main hurdle in the commercialization of flexible and wearable products. The objective of the present review paper is to summarize the progress made so far in graphene-based flexible and wearable applications. The current developments including challenges and future perspectives arc also highlighted.
文摘介绍了柔性可穿戴压电超声传感器压电层、背衬层、匹配层、封装层、电极层的结构设计和材料选择,论述了利用有限元分析(Finite Element Analysis,FEA)技术进行柔性可穿戴压电超声传感器模拟设计的优势,阐述了电极图案化等柔性可穿戴压电超声传感器制造领域中的关键技术,分析了柔性可穿戴压电超声传感器在深层组织成像、血流动力学监测、促进骨损伤恢复、辅助透皮给药等领域的应用情况。展望了柔性可穿戴压电超声传感器的发展方向,指出未来可通过应用高性能信号处理技术、改进超声探测成像算法、优化传感器结构设计方案等手段,进一步提升柔性可穿戴压电超声传感器的测量准确性、使用安全性和集成化程度,促进该类传感器市场化、产业化发展。