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Discussion on growth, emission and piezoelectric properties of zinc guanidinium phosphate single crystal: a potential candidate for transducer and LED applications

机译:磷酸锌磷酸锌单晶生长,排放和压电性能探讨:换能器和LED应用的潜在候选者

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摘要

Zinc guanidinium phosphate, a semi-organic single crystal, was grown successfully by a slow evaporation solution growth technique. The cell parameters of the grown crystal were confirmed using a powder X-ray diffraction study. The electrical property of the sample was analysed using dielectric and piezoelectric studies. The dielectric constant, dielectric loss and alternating-current conductivity were calculated for various frequencies and temperatures. The solid state parameters such as plasma energy, Penn gap energy, Fermi energy and electronic polarizability were calculated. The piezoelectric property of the title crystal was ascertained by determining its piezoelectric charge coefficient (d33). The optical transmittance and energy gap of the grown crystal were examined using ultraviolet-visible-near-infrared spectral analysis. The title molecule was optimized and the frontier molecular orbital was performed using B3LYP/6-31 + G(2d,2p). The emission property of the titular compound was analysed using a photoluminescence study. The dominant colour emission of the grown crystal was found using CIE colour chromaticity coordinates. The nonlinear property of the titular compound was confirmed using a Kurtz-Perry powder technique. The above results illustrate that the title crystal is a potential candidate for light emitting and nonlinear applications. This work explains the dominant colour emitting behaviour and electrical properties such as dielectric and piezoelectric properties of the title crystal, which are reported for the first time.
机译:磷酸锌磷酸锌,半有机单晶,通过缓慢蒸发溶液生长技术成功生长。使用粉末X射线衍射研究确认生长晶体的细胞参数。使用电介质和压电研究分析样品的电性能。针对各种频率和温度计算介电常数,介电损耗和交流电率。计算诸如等离子体能量,PENN间隙能量,费米能量和电子极化等的固态参数。通过确定其压电电荷系数(D33)来确定标题晶体的压电性能。使用紫外 - 可见近红外光谱分析检查生长晶体的光学透射率和能量隙。优化标题分子,使用B3LYP / 6-31 + G(2D,2P)进行前沿分子轨道。使用光致发光研究分析名词化合物的排放性能。使用CIE颜色色度坐标发现生长晶体的显着颜色发射。使用Kurtz-Perry粉末技术确认标题化合物的非线性性质。上述结果说明标题晶体是发光和非线性应用的潜在候选者。该工作解释了主要的颜色发光行为和电性能,例如标题晶体的介质和压电性质,这是首次报道的标题晶体。

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