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NASICON(NaAlPO)基玻璃电解质材料的结构解析:硼和镓的有效影响

Structural elucidation of NASICON (NaAlPO) based glass electrolyte materials: effective influence of boron and gallium.

作者信息

Allu Amarnath R, Balaji Sathravada, Illath Kavya, Hareendran Chaithanya, Ajithkumar T G, Biswas Kaushik, Annapurna K

机构信息

Glass Division, CSIR-Central Glass and Ceramic Research Institute 700032 Kolkata India

Central NMR Facility and Physical and Materials Chemistry Division, CSIR-National Chemical Laboratory 411008 Pune India.

出版信息

RSC Adv. 2018 Apr 17;8(26):14422-14433. doi: 10.1039/c8ra01676c.

Abstract

Understanding the conductivity variations induced by compositional changes in sodium super ionic conducting (NASICON) glass materials is highly relevant for applications such as solid electrolytes for sodium (Na) ion batteries. In the research reported in this paper, NASICON-based NCAP glass (NaCaAlPO) was selected as the parent glass. The present study demonstrates the changes in the Na ion conductivity of NCAP bulk glass with the substitution of boron (NCABP: NaCaAlBPO) and gallium (NCAGP: NaCaAlGaPO) for phosphorus and the resulting structural variations found in the glass network. For a detailed structural analysis of NCAP, NCABP and NCAGP glasses, micro-Raman and magic angle spinning-nuclear magnetic resonance (MAS-NMR) spectroscopic techniques (for P, Al, Na, B and Ga nuclei) were used. The Raman spectrum revealed that the NCAP glass structure is more analogous to the AlPO mesoporous glass structure. The P MAS-NMR spectrum illustrated that the NCAP glass structure consists of a high concentration of Q (3Al) units, followed by Q (2Al) units. The Al MAS-NMR spectrum indicates that alumina exists at five different sites, which include AlO units surrounded by AlO units, Al(OP), Al(OP), Al(OAl) and Al(OP), in the NCAP glass structure. The P, Al and B MAS-NMR spectra of the NCABP glass revealed the absence of B-O-Al linkages and the presence of B-O-B-O-P linkages which further leads to the formation of borate and borophosphate domains. The Ga MAS-NMR spectrum suggests that gallium cations in the NCAGP glass compete with the alumina cations and occupy four (GaO), five (GaO) and six (GaO) coordinated sites. The Raman spectrum of NCAGP glass indicates that sodium cations have also been substituted by gallium cations in the NCAP glass structure. From impedance analysis, the dc conductivity of the NCAP glass (∼3.13 × 10 S cm) is slightly decreased with the substitution of gallium (∼2.27 × 10 S cm) but considerably decreased with the substitution of boron (∼1.46 × 10 S cm). The variation in the conductivity values are described based on the structural changes of NCAP glass with the substitution of gallium and boron.

摘要

了解钠超离子导电(NASICON)玻璃材料成分变化引起的电导率变化,对于钠离子电池固体电解质等应用具有高度相关性。在本文报道的研究中,基于NASICON的NCAP玻璃(NaCaAlPO)被选为母体玻璃。本研究展示了用硼(NCABP:NaCaAlBPO)和镓(NCAGP:NaCaAlGaPO)替代磷后,NCAP块状玻璃中钠离子电导率的变化以及在玻璃网络中发现的结构变化。为了对NCAP、NCABP和NCAGP玻璃进行详细的结构分析,使用了微拉曼光谱和魔角旋转核磁共振(MAS-NMR)光谱技术(用于磷、铝、钠、硼和镓原子核)。拉曼光谱显示,NCAP玻璃结构更类似于AlPO介孔玻璃结构。磷MAS-NMR光谱表明,NCAP玻璃结构由高浓度的Q(3Al)单元组成,其次是Q(2Al)单元。铝MAS-NMR光谱表明,在NCAP玻璃结构中,氧化铝存在于五个不同的位置,包括被AlO单元包围的AlO单元、Al(OP)、Al(OP)、Al(OAl)和Al(OP)。NCABP玻璃的磷、铝和硼MAS-NMR光谱显示不存在B-O-Al键,存在B-O-B-O-P键,这进一步导致硼酸盐和硼磷酸盐域的形成。镓MAS-NMR光谱表明,NCAGP玻璃中的镓阳离子与氧化铝阳离子竞争,并占据四配位(GaO)、五配位(GaO)和六配位(GaO)的位置。NCAGP玻璃的拉曼光谱表明,在NCAP玻璃结构中,钠离子也被镓阳离子取代。通过阻抗分析,NCAP玻璃的直流电导率(约3.13×10 S cm)随着镓的取代(约2.27×10 S cm)略有下降,但随着硼的取代(约1.46×10 S cm)大幅下降。基于NCAP玻璃用镓和硼取代后的结构变化,描述了电导率值的变化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b878/9079908/779baef560ad/c8ra01676c-f1.jpg

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