Design of In Situ Poled Ce3+-Doped Electrospun PVDF/Graphene Composite Nanofibers for Fabrication of Nanopressure Sensor and Ultrasensitive Acoustic Nanogenerator

材料科学 制作 石墨烯 静电纺丝 纳米发生器 纳米纤维 兴奋剂 压力传感器 纳米技术 能量收集 发光二极管 光电子学 复合材料 压电 功率(物理) 聚合物 医学 替代医学 病理 物理 量子力学 热力学
作者
Samiran Garain,Santanu Jana,Tridib Kumar Sinha,Dipankar Mandal
出处
期刊:ACS Applied Materials & Interfaces [American Chemical Society]
卷期号:8 (7): 4532-4540 被引量:245
标识
DOI:10.1021/acsami.5b11356
摘要

We report an efficient, low-cost in situ poled fabrication strategy to construct a large area, highly sensitive, flexible pressure sensor by electrospun Ce3+ doped PVDF/graphene composite nanofibers. The entire device fabrication process is scalable and enabling to large-area integration. It can able to detect imparting pressure as low as 2 Pa with high level of sensitivity. Furthermore, Ce3+-doped PVDF/graphene nanofiber based ultrasensitive pressure sensors can also be used as an effective nanogenerator as it generating an output voltage of 11 V with a current density ∼6 nA/cm2 upon repetitive application of mechanical stress that could lit up 10 blue light emitting diodes (LEDs) instantaneously. Furthermore, to use it in environmental random vibrations (such as wind flow, water fall, transportation of vehicles, etc.), nanogenerator is integrated with musical vibration that exhibits to power up three blue LEDs instantly that promises as an ultrasensitive acoustic nanogenerator (ANG). The superior sensing properties in conjunction with mechanical flexibility, integrability, and robustness of nanofibers enabled real-time monitoring of sound waves as well as detection of different type of musical vibrations. Thus, ANG promises to use as an ultrasensitive pressure sensor, mechanical energy harvester, and effective power source for portable electronic and wearable devices.
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