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高抗裂硼硅酸盐和铝硼硅酸盐玻璃在室温下致密化的结构方面:通过固态核磁共振研究的两个案例

Structural Aspects of Ambient-Temperature Densification of Highly Crack-Resistant Borosilicate and Aluminoborosilicate Glasses: Two Case Studies Examined by Solid-State NMR.

作者信息

Gomes Yara Hellen Firmo, Logrado Millena, Inoue Tomiki, Nakane Shingo, Kato Yoshinari, Yamazaki Hiroki, Yamada Akihiro, Eckert Hellmut

机构信息

Instituto de Física de São Carlos, Universidade de São Paulo, Avenida Trabalhador São Carlense 400, São Carlos, SP 13566-590, Brazil.

Eduard-Zintl-Institut für Anorganische und Physikalische Chemie, Technische Universität of Darmstadt, Peter-Grünberg- Straße 8, L2|04 D208, 64287 Darmstadt, Germany.

出版信息

J Phys Chem B. 2024 Apr 11;128(14):3508-3520. doi: 10.1021/acs.jpcb.4c00560. Epub 2024 Apr 1.

Abstract

The structural aspects of ambient-temperature densification via pressurization at 25 GPa were studied by solid-state NMR for two case studies: An alkaline earth boroaluminosilicate glass with the composition 6CaO-3SrO-1BaO-10AlO-10BO-70SiO (labeled SAB) and a sodium magnesium borosilicate glass with the composition 10NaO-10MgO-20BO-60SiO (labeled MNBS). For SAB glass, cold pressurization results in significant increases in the average coordination numbers of both boron and aluminum, in line with previous results found in hot-compressed alkali aluminoborosilicate glasses. In addition, Al/B dipolar recoupling experiments reveal a significant decrease in the B/Al dipolar interaction strength upon pressurization, suggesting that the higher-coordinated boron and aluminum species experience weaker magnetic interactions. While this is an expected consequence of the longer internuclear distances involving higher coordination states, the magnitude of the effect also is consistent with a decrease of average B-O-Al internuclear connectivity. By conjecture, a decreased B-O-Al connectivity may present a mechanism of plastic flow inhibiting crack initiation in aluminoborosilicate glasses. In the case of the MNBS glass, no change in the average boron coordination number was observed within experimental error; however, densification increases the extent of B-O-Si connectivity at the expense of small ring structures with dominant B-O-B connectivity. With regard to boron coordination, the data obtained for both case studies differ from those previously found in a series of alkali borosilicate glasses, which had shown an unexpected decrease in upon increased pressure. The results of the present study highlight the importance of changes of medium-range order regarding densification.

摘要

通过在25 GPa压力下进行室温致密化的结构方面,针对两个案例研究采用固态核磁共振进行了研究:一种组成为6CaO - 3SrO - 1BaO - 10AlO - 10BO - 70SiO的碱土硼铝硅酸盐玻璃(标记为SAB)和一种组成为10NaO - 10MgO - 20BO - 60SiO的钠镁硼硅酸盐玻璃(标记为MNBS)。对于SAB玻璃,冷压导致硼和铝的平均配位数显著增加,这与之前在热压碱铝硼硅酸盐玻璃中发现的结果一致。此外,Al/B双极重耦合实验表明,加压后B/Al双极相互作用强度显著降低,这表明高配位的硼和铝物种经历较弱的磁相互作用。虽然这是涉及更高配位态的更长核间距的预期结果,但该效应的大小也与平均B - O - Al核间连通性的降低一致。据推测,B - O - Al连通性的降低可能是抑制铝硼硅酸盐玻璃中裂纹萌生的塑性流动机制。在MNBS玻璃的情况下,在实验误差范围内未观察到平均硼配位数的变化;然而,致密化以具有主要B - O - B连通性的小环结构为代价增加了B - O - Si连通性的程度。关于硼配位,两个案例研究获得的数据与之前在一系列碱硼硅酸盐玻璃中发现的数据不同,后者显示压力增加时硼配位意外降低。本研究结果突出了中程有序变化对致密化的重要性。

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