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首页> 外文期刊>RSC Advances >Effect of lead and caesium on the mechanical, vibrational and thermodynamic properties of hexagonal fluorocarbonates: a comparative first principles study
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Effect of lead and caesium on the mechanical, vibrational and thermodynamic properties of hexagonal fluorocarbonates: a comparative first principles study

机译:铅和铯对六边形氟碳化的机械,振动和热力学性能的影响:比较第一原理研究

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摘要

Exploration of the structure-property correlation of fluorocarbon materials has received much interest over recent years due to their extremely strong nonlinear optical (NLO) responses (13.6 times that of KH2PO4(KDP)), good ultraviolet (UV) cutoff (<200 nm) with better mechanical and chemical stability. In the present work a novel CsPbCO3F, ABCO(3)F (A = K, Rb; B = Ca, Sr) series is explored using density functional theory (DFT) calculations focusing on their mechanical, vibrational and thermodynamic properties and their Born effective charge (BEC) tensors. The calculated structural properties of lead carbonate fluoride with a semi-empirical dispersion corrected Ortmann Bechstedt Schmidt (OBS) method are found to be in relatively close agreement with experimental data. The obtained single crystal elastic constants satisfy the Born's mechanical stability criteria. The calculated bulk modulus value of lead carbonate (41 GPa) indicates its soft nature compared with other studied carbonates and is observed to be harder than KDP (26 GPa). In addition we have calculated the polycrystalline properties, bulk modulus (B), shear modulus (G), Young's modulus (E) and Poisson's ratio (sigma) of CsPbCO3F and ABCO3F (A = K, Rb; B = Ca, Sr) using the Voigt, Reuss and Hill approximations. The obtained B/G (>1.75) results reveal the ductile nature of all the studied materials except for KCaCO3F (1.67) which is found to be brittle. Results of the hexagonal shear anisotropic factors (A(1), A(2), A(3)) indicate that all the studied crystals possess considerable mechanical anisotropy. Calculated zone centered vibrational infrared (IR) spectra confirm the higher optical activity of CsPbCO3F compared with the other carbonates. The obtained high frequency modes are consistent with the experimental values. The obtained BECs reveal the presence of a mixed covalent-ionic character of the compounds. The thermodynamic properties, namely entropy, Debye temperature, heat capacity, enthalpy, thermal expansion and thermal conductivity, have been computed at different temperatures ranging from 5 K to 1000 K. The results show that the lead based compound has the highest thermal conductivity (32.430 W m(-1) K-1) of the reported carbonate materials. The results clearly indicate that the material could show better durability than LiNbO3, alpha-SiO2, CaCO3, and Ba3B6O12 hexagonal NLO materials. All the computed thermodynamic properties indicate that CsPbCO3F might be a potential candidate for second-order NLO applications. The polycrystalline, vibrational and thermodynamic properties of carbonate materials presented in this work could be a step forward in the process of developing new NLO materials.
机译:由于其极强的非线性光学(NLO)反应(KH2PO4(KDP)的13.6倍),近年来近年来,氟碳材料结构性质相关性的探索已经非常兴趣(KH2PO4(KDP)的13.6倍),良好的紫外(UV)截止(<200nm)具有更好的机械和化学稳定性。在本作工作中,使用密度泛函理论(DFT)计算探索了一种新的CSPBCO3F,ABCO(3)F(A = K,RB; B = CA,SR)系列,其专注于它们的机械,振动和热力学性质及其出生的生效充电(BEC)张量。发现铅碳酸铅氟化物与半经验分散校正校正酿酒师的结构性能,发现与实验数据相对较近的协议。所获得的单晶弹性常数满足出生的机械稳定性标准。铅碳酸铅(41GPa)的计算出的体积模量值表明其与其他研究的碳酸盐相比的软性,并且观察到比KDP(26GPa)更硬。此外,我们已经计算了CSPBCO3F和ABCO3F(A = K,RB; B = CA,SR)的多晶属性,散装量(B),剪切模量(sh旋量子(G),杨氏模量(e)和泊松比(Sigma)(a = k,rb; b = ca,sr) Voigt,Reuss和Hill近似值。获得的B / G(> 1.75)结果显示除KCACO3F(1.67)外的所有研究材料的延性性质。六边形剪切各向异性因子的结果(A(1),A(2),A(3))表明所有研究的晶体具有相当大的机械各向异性。计算区域中心振动红外(IR)光谱与其他碳酸盐相比,CSPBCO3F的光学活性较高。获得的高频模式与实验值一致。所得BECS揭示了化合物的混合共价离子特征的存在。热力学性质,即熵,德比,热容,焓,热膨胀和导热率,在不同的温度范围为5 k至1000k。结果表明,基于引线的化合物具有最高的导热性(32.430报告的碳酸盐材料的W m(-1)k-1)。结果清楚地表明,该材料可以显示比Linbo3,α-SiO2,CaCO 3和Ba3b6O12六边形NLO材料更好的耐久性。所有计算的热力学属性表明CSPBCO3F可能是二阶NLO应用的潜在候选者。在该工作中呈现的碳酸盐材料的多晶,振动和热力学性能可以是开发新的NLO材料的过程中的前进。

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  • 来源
    《RSC Advances 》 |2016年第102期| 共13页
  • 作者单位

    Univ Hyderabad ACRHEM Prof CR Rao Rd Hyderabad 500046 Telangana India;

    Univ Hyderabad ACRHEM Prof CR Rao Rd Hyderabad 500046 Telangana India;

    Univ West Bohemia New Technol Res Ctr Univ 8 Plzen 30614 Czech Republic;

    CSIR Natl Phys Lab Dr KS Krishnan Marg New Delhi 110012 India;

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  • 正文语种 eng
  • 中图分类 化学 ;
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