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首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Second-Harmonic Generation and Photoluminescence Properties of Sn(II)- and Bi(III)-Based Lone Pair Cation-Pyridine Dicarboxylate Coordination Compounds
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Second-Harmonic Generation and Photoluminescence Properties of Sn(II)- and Bi(III)-Based Lone Pair Cation-Pyridine Dicarboxylate Coordination Compounds

机译:SN(II) - 和Bi(III)的二谐发电和光致发光性质 - 基于孤牌溶液 - 吡啶二羧酸甲酯配位化合物

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摘要

Lone pair cation-based novel coordination compounds Sn[(pdc)(H2O)] (Sn-I) and (H(2)bpy)[Bi(pdc)(2)(Hpdc)]center dot 5H(2)O (Bi-I) (pdc = pyridine-2,6-dicarboxylate; bpy = 4,4'-bipyridine) were synthesized through mild hydrothermal reactions. While Sn-I crystallizing in the polar space group, Pca2(1), exhibits a helical chain structure consisting of SnO3N distorted seesaws, 2,6-pdc linkers, and water molecules, Bi-I crystallizing in the centrosymmetric (CS) space group, P (1) over bar, reveals a pseudo-3D network composed of BiO5N3 polyhedra, 2,6-pdc ligands, H(2)bpy(2+) cations, and isolated H2O molecules. The lone cations Sn2+ and Bi3+ in the title compounds are in a highly deformed polyhedral environment. The single-crystal-to-single-crystal transformation from Sn-I to the anhydrous Sn[(pdc)] (Sn-II) with the polar noncentrosymmetric structure was successfully achieved upon heating crystals of Sn-I. UV-vis diffuse reflectance spectra indicate that the introduction of Sn2+ or Bi3+ red-shifts the adsorption edges upon coordination. Powder second-harmonic generation (SHG) measurements indicate that Sn-I and Sn-II are type-I phase-matchable and exhibit SHG intensity of ca. 15 and 35 times that of alpha-SiO2, respectively. Solid state photoluminescence (PL) measurements indicate that Bi-I is an excellent green emitting phosphor with the quantum efficiency up to 26% and outstanding decay lifetime of 1.82 ms at room temperature.
机译:基于孤立的基于阳离子的新型协调化合物Sn [(PDC)(H 2 O)](SN-I)和(H(2)BPY)[Bi(PDC)(2)(HPDC)]中心点5H(2)O( Bi-1)(PDC =吡啶-2,6-二羧酸盐; BPY = 4,4'-硼酸酯)通过温和的水热反应合成。虽然Sn-I在极性空间组中结晶PCA2(1),但呈螺旋链结构,由SnO3N扭曲的跷跷板,2,6-PDC接头和水分子组成,Bi-I在CentroSymmetric(CS)空间组中结晶,P(1)在酒吧,揭示了由Bio5N3多面体,2,6-PDC配体,H(2)BPY(2+)阳离子和分离的H2O分子组成的伪3D网络。标题化合物中的孤阳离子Sn2 +和Bi3 +在高度变形的多面体环境中。在加热Sn-1的加热晶体时成功地实现了来自Sn-I至无水Sn [(PDC)](SN-II)的单晶与单晶转化与极性非浓对称结构。 UV-VI扩散反射光谱表明,在协调时引入SN2 +或BI3 +红移吸附边缘。粉末二次谐波产生(SHG)测量表明SN-I和SN-II是类型-I相位匹配的,并且表现出CA的SHG强度。分别为α-SiO2的15和35倍。固态光致发光(PL)测量表明,Bi-i是一个优异的绿色发光磷光体,量子效率高达26%,在室温下为1.82ms的出色衰减寿命。

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