Synthesis, Crystal Structure and Luminescent Property of a New Holmium(Iii) Coordination Polymer Involving 2,5-Dihydroxy-1,4-Terephthalic Acid as Ligand

Linan Dun, He Wang, Jiajun Wang, Shuang Han, Baosheng Zhang, Xue Chen, Chuanbi Li
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Abstract

A novel coordination polymer {[Ho 2 (DHTA) 3 (H 2 O) 5 ]·H 2 O} n was synthesized by hydrothermal synthesis (DHTA = 2,5-dihydroxy-1,4-terephthalic acid). The Crystallographic data show that the crystal structure belongs to triclinic space system, P-1 space group with a = 9.6617(17) Å, b = 902(2) Å, c = 13.284(2) Å, α = 100.617(3)°, β = 92.765(2)°, γ = 106.715(2)°, V = 1429.6(4) Å 3 , Z = 2, C 24 H 24 O 24 Ho 2 , M r = 1026.290, D c = 2.377 g/cm 3 , F (000) = 982, R 1 = 0.0325, wR 2 = 0.0845. The structure and properties of the complex were analyzed and characterized by single crystal X-ray diffraction, IR, TGA, luminescence and PXRD. The {[Ho 2 (DHTA) 3 (H 2 O) 5 ]·H 2 O} n contains two Ho(III), the two metal centers Ho(III) are eight-coordinated. The adjacent metal centers are connected by DHTA and extend infinitely in all directions, forming a three-dimensional network structure. Meanwhile, hydrogen bonding and π-π stacking in the structure enhanced the stability of the complex. The TGA results show that from 400 to 650 o C, it is ascribed to the removal of the organic component, above 650 o C, the residual is Holmium(III) oxide (Ho 2 O 3 ). The luminescent results suggest that complex 1 has potential as a new green luminescence material.
以2,5-二羟基-1,4-对苯二甲酸为配体的新型钬(Iii)配位聚合物的合成、晶体结构和发光性能
采用水热法合成了一种新型配位聚合物{[Ho 2 (DHTA) 3 (h2o) 5]·h2o} n (DHTA = 2,5-二羟基-1,4-对苯二甲酸)。晶体的数据表明,晶体结构属于三斜晶系的空间系统,p - 1空间群= 9.6617 (17),b = 902 (2) a, c = 13.284(2),α= 100.617(3)°,β= 92.765(2)°,γ= 106.715(2)°,V = 1429.6 (4) 3, Z = 2, c = O 24 H 24 24 Ho 2 M r = 1026.290, D c = 2.377克/厘米3,F (000) = 982, r 1 = 0.0325,或者说是2 = 0.0845。通过单晶x射线衍射、红外光谱、热重分析、发光和PXRD等手段对配合物的结构和性能进行了分析和表征。{[Ho 2 (DHTA) 3 (h2o) 5]·h2o} n含有两个Ho(III),两个金属中心Ho(III)是八配位的。相邻的金属中心通过DHTA连接,向各个方向无限延伸,形成三维网络结构。同时,结构中的氢键和π-π堆积增强了配合物的稳定性。热重分析结果表明,在400 ~ 650℃范围内,有机组分脱除,650℃以上残余为氧化钬(ⅲ)(Ho 2o)。发光结果表明配合物1具有作为新型绿色发光材料的潜力。
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