Short range order structrures of lithium oxy-thiosilicophosphate glasses

Q1 Physics and Astronomy Journal of Non-Crystalline Solids: X Pub Date : 2023-09-01 DOI:10.1016/j.nocx.2023.100198
Guantai Hu, Victor M. Torres III, Steve W. Martin
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Abstract

In this work, the compositional series of sulfide and mixed oxysulfide (MOS) glasses 0.56Li2S + 0.44[(0.33-x)PS5/2 + xPO5/2 + 0.67SiS2] was prepared, where 0 ≤ x ≤ 0.33, and their short range order (SRO) structures and their thermal properties have been investigated. Powder x-ray diffraction (XRD) confirmed that the MOS glasses were free from crystallization, with only very minor diffraction peaks in the x = 0 glass being observed. Fourier transform infrared (FT-IR), Raman, and 29Si and 31P magic angle spinning (MAS) NMR spectroscopies were used to identify the SRO structures present in these glasses. These spectra revealed oxygen migration from P to Si during synthesis. Although oxygen was introduced in the form of phosphorus oxide, the majority of the oxygen in these glasses ends up being bonded to silicon, thereby creating sulfur-rich SROs centered by phosphorus and MOS SROs centered by silicon. It was further found that the P-S SRO species were predominantly charged non-bridging sulfurs (NBS). The Si SRO species were comprised of neutral bridging oxygens (BOs) and charged non-bridging oxygens (NBOs) and neutral bridging sulfurs (BS) and charged non-bridging sulfurs with the neutral BO and BS species being larger in fraction than the NBO and NBS. These results suggest that the preponderance of the mobile Li+ cations in these glasses are located near the more negatively charged P centers and not near the more neutrally charged Si centers. The average negative charge of the P SRO structures was found to be ∼ − 3.0 with ∼97% of the phosphorous species in the P0 SRO while the average negative charge of the Si SRO structures was found to be −2.3. Consistent with the creation of the large numbers of NBS on the P and more BOs and BSs on the Si, these values are more negative and more positive, respectively, than the compositionally expected average value of −2.55. Differential scanning calorimetry (DSC) measurements of their glass transition (Tg) and crystallization (Tc) temperatures showed that the Tgs of these glasses are higher than 300 °C and their working ranges, ΔT ≡ Tc – Tg, are ∼100 °C.

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氧-硫代硅酸锂玻璃的短程有序结构
在0≤x≤0.33的条件下,制备了0.56Li2S + 0.44[(0.33-x)PS5/2 + xPO5/2 + 0.67SiS2]组成系列的硫化物和混合氧化硫化物(MOS)玻璃,并对其短距离有序(SRO)结构和热性能进行了研究。粉末x射线衍射(XRD)证实了MOS玻璃没有结晶,在x = 0玻璃中只观察到非常小的衍射峰。傅里叶变换红外光谱(FT-IR)、拉曼光谱(Raman)和29Si和31P魔角旋转(MAS)核磁共振光谱(NMR)对这些玻璃中的SRO结构进行了鉴定。这些光谱揭示了氧在合成过程中从P向Si的迁移。虽然氧以氧化磷的形式引入,但这些玻璃中的大部分氧最终与硅结合,从而产生以磷为中心的富硫sro和以硅为中心的MOS sro。进一步发现,P-S SRO主要是带电的非桥接硫(NBS)。Si SRO主要由中性桥接氧(BOs)和带电非桥接氧(NBOs)、中性桥接硫(BS)和带电非桥接硫组成,其中BO和BS的比例大于NBO和NBS。这些结果表明,在这些玻璃中,Li+阳离子的优势位于带负电荷的P中心附近,而不在带中性电荷的Si中心附近。P SRO结构的平均负电荷为~ - 3.0,其中P SRO中有~ 97%的磷,而Si SRO结构的平均负电荷为−2.3。与P上大量的NBS和Si上更多的BOs和BSs的产生相一致,这些值分别比组成预期的平均值- 2.55更负和更正。差示扫描量热法(DSC)对它们的玻璃化转变(Tg)和结晶(Tc)温度的测量表明,这些玻璃的Tgs高于300℃,其工作范围ΔT≡Tc - Tg为~ 100℃。
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来源期刊
Journal of Non-Crystalline Solids: X
Journal of Non-Crystalline Solids: X Materials Science-Materials Chemistry
CiteScore
3.20
自引率
0.00%
发文量
50
审稿时长
76 days
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Editorial Board Preface Preface Altering the optical, physical, and TL Dosimetric properties of MgSO4:Dy2O3:B2O3 transparent glass ceramic system: Evaluating the impact of roughness control and ZnO inclusion Editorial Board
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