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首页> 外文期刊>RSC Advances >A new organic NLO material isonicotinamidium picrate (ISPA): crystal structure, structural modeling and its physico-chemical properties
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A new organic NLO material isonicotinamidium picrate (ISPA): crystal structure, structural modeling and its physico-chemical properties

机译:新型有机NLO材料IsonicotinaInaidium Picrate(ISPA):晶体结构,结构建模及其物理化学性质

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摘要

A novel organic nonlinear optical (NLO) crystal, isonicotinamidium picrate (ISPA) was synthesized and grown by the slow evaporation method. Formation of the new crystalline compound was confirmed by a single crystal X-ray diffraction study. The title compound crystallizes in the monoclinic crystal system with the space group of P 2 _(1) / n . DFT was carried out to calculate the bond lengths and bond angles. Structural parameters obtained from single crystal XRD and DFT studies are in good agreement with each other. The frontier energy gaps calculated theoretically are useful to understand the charge transfer taking place in the molecule. Polarizability of the ISPA compound is found using Penn gap analysis and the Clausius–Mossotti equation. The UV-vis-NIR spectral study showed that the grown crystal is transparent in the entire visible region with the lower cut-off wavelength of 469 nm. The four independent tensor coefficients of dielectric permittivity were found to be ε _(11) = 1.42, ε _(22) = 4.62, ε _(33) = 6.23 and ε _(13) = 5.56 from the dielectric measurements. The titular compound ISPA is thermally stable up to 229 °C assessed by thermogravimetric and differential thermal (TG-DTA) analyses. The specific heat capacity of ISPA is found to be 3.49 J g ~(?1) K ~(?1) . The laser induced surface damage threshold of the grown crystal was measured to be 0.22537 GW cm ~(?2) for 1064 nm Nd:YAG laser radiation. Nonlinear refractive index ( n _(2) ), absorption coefficient ( β ) and third order nonlinear susceptibility ( χ ~((3)) ) were determined using the Z-scan technique. The optical limiting study revealed that the transmitted output power increases linearly with the input power up to the irradiance of around 3.25 mW mm ~(?2) .
机译:通过缓慢的蒸发方法合成并生长了一种新型有机非线性光学(NLO)晶体,异滴氨基氨基吡啶(ISPA)。通过单晶X射线衍射研究证实了新的结晶化合物的形成。标题化合物在单斜晶体系中结晶,具有P 2 _(1)/ N的空间组。进行DFT以计算键长度和键角。从单晶XRD和DFT研究获得的结构参数彼此吻合良好。理论上计算的前沿能量间隙可用于理解分子中发生的电荷转移。使用Penn Gap分析和Clausius-Mossotti方程发现ISPA化合物的极化性。 UV-Vis-niR光谱研究表明,生长的晶体在整个可见区域中是透明的,其截止波长为469nm。发现介电介电常数的四个独立的张量系数是ε_(11)= 1.42,ε_(22)= 4.62,ε_(33)= 6.23和ε_(33)= 5.56来自电介质测量。标题化合物ISPA通过热重分析和差分热(TG-DTA)分析评估高达229℃的热稳定性。 ISPA的比热容量被发现为3.49Jg〜(?1)k〜(?1)。测量生长晶体的激光诱导的表面损伤阈值为1064nm Nd:YAG激光辐射的0.22537gWcm〜(Δ2)。使用Z扫描技术测定非线性折射率(N _(2)),吸收系数(β)和三阶非线性敏感性(χ〜((3)))。光学限制性研究表明,传输的输出功率随着输入电量而导致的,直到大约3.25mm mm〜(Δ2)的辐照度。

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