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Postmortem ^(7)Li NMR analysis for assessing the reversibility of lithium metal electrodes in lithium metal batteries
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作者 Jaewon Baek Sunha Kim +1 位作者 hee-Tak Kim oc hee han 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2024年第7期430-440,共11页
Despite the proficiency of lithium(Li)-7 NMR spectroscopy in delineating the physical and chemical states of Li metal electrodes,challenges in specimen preparation and interpretation impede its progress.In this study,... Despite the proficiency of lithium(Li)-7 NMR spectroscopy in delineating the physical and chemical states of Li metal electrodes,challenges in specimen preparation and interpretation impede its progress.In this study,we conducted a comprehensive postmortem analysis utilizing ^(7)Li NMR,employing a stan-dard magic angle spinning probe to examine protective-layer coated Li metal electrodes and LiAg alloy electrodes against bare Li metal electrodes within Li metal batteries(LMBs).Our investigation explores the effects of sample burrs,alignment with the magnetic field,the existence of liquid electrolytes,and precycling on the ^(7)Li NMR signals.Through contrasting NMR spectra before and after cycling,we identi-fied alterations in Li^(0) and Li^(+) signals attributable to the degradation of the Li metal electrode.Our NMR analyses decisively demonstrate the efficacy of the protective layer in mitigating dendrite and solid elec-trolyte interphase formation.Moreover,we noted that Li*ions near the Li metal surface exhibit magnetic susceptibility anisotropy,revealing a novel approach to studying diamagnetic species on Li metal elec-trodes in LMBs.This study provides valuable insights and practical guidelines for characterizing distinct lithium states within LMBs. 展开更多
关键词 NMR spectroscopy Lithium-7 Lithium metal battery Electrolyte Electrode-protective layer Solid electrolyte interface Magnetic susceptibility anisotropy Lithium-metal NMR signal Diamagnetic^(7)Li NMR signal
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用多核固体核磁共振研究CsH_2PO_4和CsH_5(PO_4)_2的制备(英文)
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作者 Seen Ae CHAE Young Eun LEE +1 位作者 oc hee han Sang Geul LEE 《波谱学杂志》 CAS CSCD 北大核心 2010年第3期436-444,共9页
探讨可能用作燃料电池固体酸电解质的化合物CsH2PO4(CDP)和CsH5(PO4)2(CPDP)的制备.CDP和CPDP混合物由摩尔比1:4的Cs2CO3:H3PO4水溶液结晶而成,而CDP和Cs2HPO4.1 .5 H2O( H-DCHP)混合物依其摩尔比1:2的水溶液制备.甲醇清洗能最有效地将... 探讨可能用作燃料电池固体酸电解质的化合物CsH2PO4(CDP)和CsH5(PO4)2(CPDP)的制备.CDP和CPDP混合物由摩尔比1:4的Cs2CO3:H3PO4水溶液结晶而成,而CDP和Cs2HPO4.1 .5 H2O( H-DCHP)混合物依其摩尔比1:2的水溶液制备.甲醇清洗能最有效地将CDP从其混合物中分离出来.CDP、CPDP以及H-DCHP的33Cs和31P魔角旋转谱以及CPDP和H-DCHP的1H魔角旋转谱均为首次报道,对各化合物的谱峰做了指认.说明,透过确认合成的电解质以及合成过程所产生的副产物,多核固体核磁共振对于控制固体酸电解质合成的品质是一个非常有用的工具. 展开更多
关键词 固体核磁共振 固体酸电解质 CsH2PO4 CsH5(PO4)2 133Cs魔角旋转NMR 31P魔角旋转NMR 1H魔角旋转NMR
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