材料科学
铁电性
压电
结晶度
极化
极化(电化学)
凝聚态物理
压电响应力显微镜
微晶
结晶学
光电子学
复合材料
电介质
物理化学
化学
冶金
物理
作者
Nagamalleswara Rao Alluri,Nirmal Prashanth Maria Joseph Raj,Gaurav Khandelwal,Pritam Kumar Panda,Amitava Banerjee,Yogendra Kumar Mishra,Rajeev Ahuja,Sang‐Jae Kim
出处
期刊:Nano Energy
[Elsevier BV]
日期:2022-02-02
卷期号:95: 107008-107008
被引量:6
标识
DOI:10.1016/j.nanoen.2022.107008
摘要
Modern room temperature ferroelectrics/piezoelectrics significantly impact advanced nanoelectronics than conventional chemical compounds. Changes in crystallinity modulation, long-range order of atoms in metalloids permits the design of novel materials. The ferroelectric like nature of a single element (selenium, Se) is demonstrated via in-plane (E⊥ar to the Se helical chains in micro-rod (MR)) and out-of-plane (E ∥el to the Se helical chains in MR) polarization. Atomic electron microscopy shows large stacks of covalently bound Se atoms in a c-axis orientation for tip bias voltage-dependent switchable domains with a 180˚ phase and butterfly displacement curves. The single crystalline Se MR has a high in-plane piezoelectric coefficient of 30 pm/V relative to polycrystalline samples due to larger grains, crystal imperfections in MR, and tuned helical chains. The energy conversion of a single Se-MR demonstrated via d13, d12 (or d15) piezoelectric modes.
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