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50BO-25LiO-25BaO三元体系中CuO掺杂硼酸盐玻璃的光谱研究

Spectroscopic inquiry of CuO-doped borate glasses in the 50BO-25LiO-25BaO ternary.

作者信息

Jiménez José A

机构信息

Department of Chemistry & Physics, Augusta University, Augusta, GA 30904, USA.

出版信息

Spectrochim Acta A Mol Biomol Spectrosc. 2021 Dec 5;262:120113. doi: 10.1016/j.saa.2021.120113. Epub 2021 Jun 27.

Abstract

Borate glasses with 50BO-25LiO-25BaO composition and CuO within 0.1-1.0 mol% relative to BO have been prepared by the melting technique, and studied by differential scanning calorimetry (DSC), X-ray diffraction (XRD), Fourier transform-infrared (FT-IR) spectroscopy, optical absorption, and photoluminescence (PL) spectroscopy with decay kinetics assessment. A thermal dilatometric assessment was first carried out for the undoped glass, followed by a glass transition temperature (T) evaluation for all glasses by DSC. A propensity toward higher T values was indicated for high CuO concentrations, consistent with a higher BO content being supported by copper ions as network modifiers. The glasses were all X-ray amorphous, whereas FT-IR spectra indicated the basic structural features of trigonal BO units and BO tetrahedra. Herein also, a tendency towards the 4-coordinated BO units was indicated for the highest CuO contents concurring with the T trend. The optical absorption analysis showed that addition of CuO up to 1.0 mol% results in significant growth of the visible Cu absorption band around 740 nm, with a decreasing trend in the optical band gap energies assessed through Tauc plots. Further analysis of the Urbach energies revealed declining values with copper doping indicating it favored a more uniform glass structure compatible with FT-IR data. An intrinsic luminescence was detected for the undoped borate glass displaying relatively long multi-exponential decay, which appeared to be quenched by Cu. The PL evaluation nevertheless supported the presence of Cu ions emitting broadly around 480 nm upon UV excitation at 250 nm. The decrease in the band gap energies is suggested to reflect the presence of ionic copper rather than an increase in non-bridging oxygens as commonly argued.

摘要

采用熔融技术制备了组成为50BO-25LiO-25BaO且CuO含量相对于BO为0.1-1.0mol%的硼酸盐玻璃,并通过差示扫描量热法(DSC)、X射线衍射(XRD)、傅里叶变换红外(FT-IR)光谱、光吸收以及具有衰减动力学评估的光致发光(PL)光谱对其进行了研究。首先对未掺杂玻璃进行了热膨胀评估,随后通过DSC对所有玻璃的玻璃化转变温度(T)进行了评估。高CuO浓度表明倾向于更高的T值,这与作为网络改性剂的铜离子支持更高的BO含量一致。所有玻璃均为X射线非晶态,而FT-IR光谱表明了三角BO单元和BO四面体的基本结构特征。在此,对于最高CuO含量,也表明了向4配位BO单元的趋势,这与T趋势一致。光吸收分析表明,添加高达1.0mol%的CuO会导致740nm附近可见Cu吸收带显著增长,通过Tauc图评估的光学带隙能量呈下降趋势。对Urbach能量的进一步分析表明,随着铜掺杂,其值下降,这表明它有利于形成与FT-IR数据兼容的更均匀玻璃结构。未掺杂的硼酸盐玻璃检测到本征发光,显示出相对较长的多指数衰减,这似乎被Cu淬灭。然而,PL评估支持在250nm紫外激发下,Cu离子在480nm左右有广泛发射。带隙能量的降低被认为反映了离子铜的存在,而不是如通常所认为的非桥氧的增加。

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