首页> 外文期刊>Bulletin of Materials Science >Electronic structure and first hyperpolarizability of poly(mu(2)-L-alanine-mu(3)-sodium nitrate (I)) crystals
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Electronic structure and first hyperpolarizability of poly(mu(2)-L-alanine-mu(3)-sodium nitrate (I)) crystals

机译:电子结构和聚(mu(2)-L-丙氨酸-mu(3)-硝酸钠(I))晶体的第一超极化性

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Poly(mu (2)-l-alanine-mu (3)-sodium nitrate (I)), p-LASN, crystals have been grown by slow evaporation at room temperature. The nominal size of the crystals obtained by the method was of 500 nm. The UV-Vis spectrum shows a wide range, where absorption is lacking around 532 nm, which is required in order to have the second harmonic emission, when an incident radiation of 1064 nm strikes on the crystal. This guarantees the possible use of the crystal in visible light applications. The transparent nature of the crystal in the visible and infrared regions within the transmission spectrum confirms the nonlinear optical properties of the crystal. Additionally, Fourier transform infrared spectroscopy displays its functional groups which correspond to the poly(mu (2)-l-alanine-mu (3)-sodium nitrate (I)), where the presence of nitrates in the lattice generally can be identified by their characteristic signature within the 1660-1625, 1300-1255, 870-833 and 763-690 cm(-1) range. Single crystal diffraction was carried out in order to determine atomic structure and lattice parameter. Structural parameters were a = 5.388(9) , b = 9.315(15) and c = 13.63(2) . The structure of poly(mu (2)-l-alanine-mu (3)-sodium nitrate (I)) shown by single crystal diffraction shows an asymmetric unit consisting of one sodium and one nitrate ion and one l-alanine molecule. The coordination geometry around the sodium atom was trigonal bipyramidal, with three bidentate nitrate anions coordinating through their oxygen atoms and two l-alanine molecules, each coordinating through one carboxyl oxygen atom. Electronic structure was obtained by using the Becke-Lee-Yang-Part and Hartree-Fock approximations with hybrid exchange-correlation three-parameter functional and G-311**G(dp) basis set. Theoretical and experimental results were compared and discussed as having an excellent agreement among them.
机译:聚(μ(2)-1-丙氨酸-μ(3)-硝酸钠(I))p-LASN晶体通过在室温下缓慢蒸发而生长。通过该方法获得的晶体的标称尺寸为500nm。 UV-Vis光谱显示范围很广,在1032 nm的入射辐射入射到晶体上时,在532 nm附近缺乏吸收,这是产生二次谐波所必需的。这保证了晶体在可见光应用中的可能使用。透射光谱内可见光和红外区中晶体的透明性证实了晶体的非线性光学性质。另外,傅立叶变换红外光谱法显示了其对应于聚(mu(2)-1-丙氨酸-mu(3)-硝酸钠(I))的官能团,通常可以通过以下方法识别晶格中硝酸盐的存在:它们在1660-1625、1300-1255、870-833和763-690 cm(-1)范围内的特征签名。为了确定原子结构和晶格参数,进行了单晶衍射。结构参数为a = 5.388(9),b = 9.315(15)和c = 13.63(2)。由单晶衍射显示的聚(μ(2)-1-丙氨酸-μ(3)-硝酸钠(I))的结构显示出由一个钠和一个硝酸根离子和一个1-丙氨酸分子组成的不对称单元。钠原子周围的配位几何结构是三角双锥体,其中三个二齿硝酸根阴离子通过它们的氧原子配位和两个l-丙氨酸分子配位,每个l-丙氨酸分子通过一个羧基氧原子配位。通过使用具有混合交换相关三参数泛函和G-311 ** G(dp)基组的Becke-Lee-Yang-Part和Hartree-Fock逼近来获得电子结构。对理论和实验结果进行了比较和讨论,认为它们之间具有极好的一致性。

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