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A Flexible Multifunctional Triboelectric Nanogenerator Based on MXene/PVA Hydrogel

机译:基于MxENE / PVA水凝胶的柔性多功能摩擦纳米液

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摘要

Triboelectric nanogenerators (TENGs) represent an emerging technology in energy harvesting, medical treatment, and information technology. Flexible, portable, and self-powered electronic devices based on TENGs are much desired, whereas the complex preparation processes and high cost of traditional flexible electrodes hinder their practical applications. Here, an MXene/polyvinyl alcohol (PVA) hydrogel TENG (MH-TENG) is presented with simple fabrication, high output performance, and versatile applications. The doping of MXene nanosheets promotes the crosslinking of the PVA hydrogel and improves the stretchability of the composite hydrogel. The MXene nanosheets also form microchannels on surfaces, which not only enhances the conductivity of the hydrogel by improving the transport of ions but also generates an extra triboelectric output via a streaming vibration potential mechanism. The measured open-circuit voltage of the MH-TENG reaches up to 230 V even in a single-electrode mode. The MH-TENG can be stretched up to 200% of the original length and demonstrates a monotonical increasing relationship between the stretchable length and the short-circuit voltage. By utilizing the MH-TENG's outstanding stretchable property and ultrahigh sensitivity to mechanical stimuli, applications in wearable movement monitoring, high-precision written stroke recognition, and low-frequency mechanical energy harvesting are demonstrated.
机译:摩擦纳米料(Tengs)代表了能源收集,医疗和信息技术的新兴技术。基于TENG的灵活,便携和自动电子设备非常需要,而传统柔性电极的复杂制备工艺和高成本妨碍了它们的实际应用。这里,具有简单的制造,高输出性能和通用应用,提出了一种蒙胶/聚乙烯醇(PVA)水凝胶腾(MH-TENG)。 MXENE纳米片的掺杂促进PVA水凝胶的交联,提高了复合水凝胶的拉伸性。 MXENE NANOSHESS还在表面上形成微通道,其不仅通过改善离子的运输而增强了水凝胶的电导率,而且还通过流振动潜在机构产生额外的摩擦输出。即使在单电极模式下,MH-Teng的测量开路电压也达到230V。 MH-TENG可以拉伸高达200%的原始长度,并在可拉伸长度和短路电压之间进行单调增加的关系。通过利用MH-TENG的出色的可伸缩性和对机械刺激的超高敏感性,证实了可穿戴运动监测,高精度写入冲程识别和低频机械能收割的应用。

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  • 来源
    《Advanced Functional Materials》 |2021年第38期|2104928.1-2104928.9|共9页
  • 作者单位

    Guangxi Univ Sch Phys Sci & Technol Ctr Nanoenergy Res Nanning 530004 Peoples R China|Chinese Acad Sci Beijing Inst Nanoenergy & Nanosyst Beijing Key Lab Micronano Energy & Sensor CAS Ctr Excellence Nanosci Beijing 101400 Peoples R China;

    Guangxi Univ Sch Phys Sci & Technol Ctr Nanoenergy Res Nanning 530004 Peoples R China|Chinese Acad Sci Beijing Inst Nanoenergy & Nanosyst Beijing Key Lab Micronano Energy & Sensor CAS Ctr Excellence Nanosci Beijing 101400 Peoples R China|Univ Chinese Acad Sci Sch Nanosci & Technol Beijing 100049 Peoples R China;

    Chinese Acad Sci Beijing Inst Nanoenergy & Nanosyst Beijing Key Lab Micronano Energy & Sensor CAS Ctr Excellence Nanosci Beijing 101400 Peoples R China|Univ Chinese Acad Sci Sch Nanosci & Technol Beijing 100049 Peoples R China;

    Chinese Acad Sci Beijing Inst Nanoenergy & Nanosyst Beijing Key Lab Micronano Energy & Sensor CAS Ctr Excellence Nanosci Beijing 101400 Peoples R China|Univ Chinese Acad Sci Sch Nanosci & Technol Beijing 100049 Peoples R China;

    Guangxi Univ Sch Phys Sci & Technol Ctr Nanoenergy Res Nanning 530004 Peoples R China|Chinese Acad Sci Beijing Inst Nanoenergy & Nanosyst Beijing Key Lab Micronano Energy & Sensor CAS Ctr Excellence Nanosci Beijing 101400 Peoples R China;

    Guangxi Univ Sch Phys Sci & Technol Ctr Nanoenergy Res Nanning 530004 Peoples R China|Chinese Acad Sci Beijing Inst Nanoenergy & Nanosyst Beijing Key Lab Micronano Energy & Sensor CAS Ctr Excellence Nanosci Beijing 101400 Peoples R China|Univ Chinese Acad Sci Sch Nanosci & Technol Beijing 100049 Peoples R China|Georgia Inst Technol Sch Mat Sci & Engn Atlanta GA 30332 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    flexible and wearable; hydrogels; MXenes; self-powered sensors; triboelectric nanogenerators;

    机译:柔性且可穿戴;水凝胶;mxenes;自给自足传感器;摩擦纳米料;

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