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Dielectric relaxation, protonic defect, conductivity mechanisms, complex impedance and modulus spectroscopic studies of pure and L-threonine-doped ammonium dihydrogen phosphate

机译:介电弛豫,质子缺陷,电导率机制,纯和L-苏氨酸掺杂磷酸二氢铵的复杂阻抗和模量谱研究

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摘要

Ammonium dihydrogen phosphate (ADP) has a wide range of applications in integrated and nonlinear optics. The dopant-like L-threonine has hydrogen-bonded side chain that causes defects in ADP. The pure and L-threonine-doped ADP crystals are grown using slow evaporation technique. The powder XRD patterns show the single-phase nature of pure and doped ADP. The dielectric constant and dielectric loss have shown the usual behaviour with respect to frequency and temperature. The protonic conduction is prevailing for electric transport, and from Jonscher's plot, the correlation barrier hopping (CBH) and non-overlapping small polaron tunnelling (NSPT) conduction mechanism is confirmed. The Nyquist plot and modulus spectra show the presence of grain and grain boundary. The stretch exponent exhibits non-Debye-type relaxation. The activation energy of relaxation time for all samples is calculated. The modulus master curve and variation of ZaEuro(3) and MaEuro(3) versus angular frequency confirmed the proposed conduction. The nonlinear optical counterpart is in accordance with dielectric results.
机译:磷酸二氢铵(ADP)具有广泛的集成和非线性光学应用。掺杂剂样的L-苏氨酸具有氢键键侧链,导致ADP中的缺陷。使用缓慢的蒸发技术生长纯和L-苏氨酸掺杂的ADP晶体。粉末XRD图案显示纯净和掺杂ADP的单相性质。介电常数和介电损耗已经示出了相对于频率和温度的通常行为。对于电动运输,并且从Jonscher的曲线,确认相关势垒跳跃(CBH)和非重叠小极化隧道(NSPT)传导机构的骨膜传输。奈奎斯特图和模量光谱显示出谷物和晶界的存在。拉伸指数表现出非德义型松弛。计算所有样品的弛豫时间的激活能量。模量主曲线和Zaeuro(3)和Maeuro(3)的变化与角度频率证实了所提出的传导。非线性光学对应物符合介电结果。

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