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Perovskite nickelates as electric-field sensors in salt water

机译:钙钛矿镍酸盐作为盐水中的电场传感器

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摘要

Designing materials to function in harsh environments, such as conductive aqueous media, is a problem of broad interest to a range of technologies, including energy, ocean monitoring and biological applications(1-4). The main challenge is to retain the stability and morphology of the material as it interacts dynamically with the surrounding environment. Materials that respond to mild stimuli through collective phase transitions and amplify signals could open up new avenues for sensing. Here we present the discovery of an electric-field-driven, water-mediated reversible phase change in a perovskite-structured nickelate, SmNiO35-7. This prototypical strongly correlated quantum material is stable in salt water, does not corrode, and allows exchange of protons with the surrounding water at ambient temperature, with the concurrent modification in electrical resistance and optical properties being capable of multi-modal readout. Besides operating both as thermistors and pH sensors, devices made of this material can detect sub-volt electric potentials in salt water. We postulate that such devices could be used in oceanic environments for monitoring electrical signals from various maritime vessels and sea creatures.
机译:设计能在恶劣环境下工作的材料,例如导电水性介质,是包括能源,海洋监测和生物应用在内的一系列技术引起广泛关注的问题(1-4)。主要挑战是在材料与周围环境动态交互时保持材料的稳定性和形态。通过集体相变对轻度刺激做出反应并放大信号的材料可能会开辟新的传感途径。在这里,我们介绍钙钛矿结构镍酸盐SmNiO35-7中电场驱动,水介导的可逆相变的发现。这种典型的高度相关的量子材料在盐水中稳定,不会腐蚀,并允许在环境温度下与周围的水交换质子,同时改变电阻和光学性质,能够进行多峰读出。除了可以同时用作热敏电阻和pH传感器外,用这种材料制成的设备还可以检测盐水中的亚伏特电位。我们假设此类设备可以在海洋环境中用于监视来自各种海上船只和海洋生物的电信号。

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  • 来源
    《Nature》 |2018年第7686期|68-72|共5页
  • 作者单位

    Purdue Univ, Sch Mat Engn, W Lafayette, IN 47907 USA;

    Purdue Univ, Sch Mat Engn, W Lafayette, IN 47907 USA;

    Argonne Natl Lab, Ctr Nanoscale Mat, Argonne, IL 60439 USA|Argonne Natl Lab, Div Mat Sci, Lemont, IL 60439 USA;

    Rutgers State Univ, Dept Phys & Astron, Piscataway, NJ 08854 USA;

    NIST, NIST Ctr Neutron Res, Gaithersburg, MD 20899 USA;

    Argonne Natl Lab, Ctr Nanoscale Mat, Argonne, IL 60439 USA;

    Argonne Natl Lab, Adv Photon Source, Xray Sci Div, Argonne, IL 60439 USA;

    Argonne Natl Lab, Adv Photon Source, Xray Sci Div, Argonne, IL 60439 USA;

    MIT, Dept Phys, Cambridge, MA 02139 USA;

    Univ Saskatchewan, Canadian Light Source, Saskatoon, SK S7N 2V3, Canada;

    Univ Saskatchewan, Canadian Light Source, Saskatoon, SK S7N 2V3, Canada;

    Columbia Univ, Dept Appl Phys & Appl Math, New York, NY 10027 USA;

    Univ Massachusetts, Dept Mech & Ind Engn, Amherst, MA 01003 USA;

    Purdue Univ, Sch Mat Engn, W Lafayette, IN 47907 USA;

    Purdue Univ, Sch Mat Engn, W Lafayette, IN 47907 USA;

    Univ Massachusetts, Dept Mech & Ind Engn, Amherst, MA 01003 USA;

    MIT, Dept Phys, Cambridge, MA 02139 USA;

    Rutgers State Univ, Dept Phys & Astron, Piscataway, NJ 08854 USA;

    Argonne Natl Lab, Ctr Nanoscale Mat, Argonne, IL 60439 USA;

    Purdue Univ, Sch Mat Engn, W Lafayette, IN 47907 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 正文语种 eng
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  • 入库时间 2022-08-18 02:51:25

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