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首页> 外文期刊>Journal of Applied Crystallography >An insight into the synthesis, crystal structure, geometrical modelling of crystal morphology, Hirshfeld surface analysis and characterization of N-(4-methylbenzyl)benzamide single crystals
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An insight into the synthesis, crystal structure, geometrical modelling of crystal morphology, Hirshfeld surface analysis and characterization of N-(4-methylbenzyl)benzamide single crystals

机译:洞察合成,晶体结构,晶体形态的几何建模,血清群地表分析和N-(4-甲基苄基)苯甲酰胺单晶的表征

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摘要

A versatile approach for the synthesis of N-(4-methylbenzyl)benzamide, C15H15NO, using CuI as catalyst has been reported. Single crystals of the synthesized compound were grown using the slow evaporation solution technique. The crystal structure of the N-(4-methylbenzyl)benzamide crystals has been determined by single-crystal X-ray diffraction. The compound crystallizes in an orthorhombic lattice, noncentrosymmetric space group Pna2(1). The crystal structure is stabilized by intermolecular N-H center dot center dot center dot O hydrogen bonds and weak C-H center dot center dot center dot pi interactions to form layers parallel to the a axis. A user-friendly approach based on centre of mass propagation vector theory was used to predict the crystal morphology. The framework developed here utilizes the concept of intermolecular bond strength to discern the crystal morphology. Fourier transform IR, NMR and high-resolution mass spectrometry analytical techniques were used for the identification of functional groups and confirmation of the structure of the title compound. All of the intermolecular interactions present in the crystal structure, including the C-H center dot center dot center dot pi, C-H center dot center dot center dot O and N-H center dot center dot center dot O interactions, were investigated and confirmed by molecular Hirshfeld surface analysis. From linear optical spectroscopy, the transmittance, optical band gap and UV cutoff wavelength were determined. The photoluminescence emission spectrum was recorded for a grown crystal. Dielectric measurements were performed at room temperature for various frequencies. The mechanical strength of the (001) plane of the title compound was measured using the Vickers micro-hardness technique. A piezo-coefficient of 15 pC N-1 was found along the (001) plane of the title crystals. The thermal stability and melting point were also investigated. In addition, density functional theory simulations were used to calculate the optimized molecular geometry and the UV-vis spectrum, and to determine the highest occupied molecular orbital/lowest unoccupied molecular orbital energy gap. The results show that N-(4-methylbenzyl)benzamide is a potential candidate for multifunctional optical and piezoelectric crystals.
机译:据报道,据报道了使用Cui作为催化剂合成N-(4-甲基苄基)苯甲酰胺,C15H15NO的通用方法。使用缓慢蒸发溶液技术生长合成化合物的单晶。通过单晶X射线衍射确定N-(4-甲基苄基)苯胺晶体的晶体结构。该化合物在正交晶格中结晶,非团体二元空间组PNA2(1)。晶体结构被分子间N-H中心点中心点中心点O氢键稳定,弱C-H中心点中心点中心点PI相互作用,形成平行于轴线的层。使用基于大规模传播载体理论中心的用户友好的方法来预测晶体形态。这里开发的框架利用分子间粘合强度的概念来辨别晶体形态。傅里叶变换IR,NMR和高分辨率质谱分析技术用于鉴定官能团和标题化合物结构的确认。研究并通过分子Hirshfeld表面分析研究了晶体结构中存在的所有分子间相互作用,包括CH中心点中心点中心点PI,CH中心点中心点中心点PI,CH中心点中心点中心点o和NH中心点中心点中心点O相互作用。从线性光学光谱学,确定透射率,光学带隙和UV截止波长。记录光致发光发射光谱以用于生长的晶体。在室温下进行各种频率的介电测量。使用Vickers微硬度技术测量标题化合物的(001)平面的机械强度。沿标题晶体的(001)平面发现了15cc n-1的压电系数。还研究了热稳定性和熔点。此外,密度函数理论模拟用于计算优化的分子几何形状和UV-VIS光谱,并确定最高占用的分子轨道/最低未占用的分子轨道能隙。结果表明,N-(4-甲基苄基)苯甲酰胺是多功能光学和压电晶体的潜在候选者。

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