“…2a–d and Supplementary Note 2, ESI†). Both I-MgF 2 @UiO and C-MgF 2 @UiO show Mg–F and Zr–F bonds, 27–30 further supporting the existence of MgF 2 and F-terminated groups in UiO-66. 31 The intensity of the XPS spectra of C–MgF 2 @UiO exhibited smaller Zr –O and Zr–F peaks and larger Mg–F peaks compared to those of I-MgF 2 @UiO, which also confirmed that MgF 2 was dominantly formed on the surface of the UiO-66 NPs.…”
Li metal is considered an ideal anode material for high-energy-density rechargeable Li metal batteries (LMBs). Nevertheless, sluggish Li+ transport kinetics and uncontrolled Li dendrite growth result in poor cycling performance,...
“…2a–d and Supplementary Note 2, ESI†). Both I-MgF 2 @UiO and C-MgF 2 @UiO show Mg–F and Zr–F bonds, 27–30 further supporting the existence of MgF 2 and F-terminated groups in UiO-66. 31 The intensity of the XPS spectra of C–MgF 2 @UiO exhibited smaller Zr–O and Zr–F peaks and larger Mg–F peaks compared to those of I-MgF 2 @UiO, which also confirmed that MgF 2 was dominantly formed on the surface of the UiO-66 NPs.…”
Li metal is considered an ideal anode material for high-energy-density rechargeable Li metal batteries (LMBs). Nevertheless, sluggish Li+ transport kinetics and uncontrolled Li dendrite growth result in poor cycling performance,...
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