ACS Applied Materials & Interfaces · 2022 · 40 citations · 40 references
Polyoxometalates (POMs) have shown great potential in sodium-ion batteries (SIBs) due to their reversible multielectron redox property and high ionic conductivity. Currently, POM-based SIBs suffer from the irreversible trapping and sluggish transmission kinetics of Na<sup>+</sup>. Herein, a series of POMs/metal-organic frameworks (MOFs)/graphene oxide (GO) (MOFs = MIL-101, MIL-53, and MIL-88B; POM = [PMo<sub>12</sub>O<sub>40</sub>]<sup>3-</sup>, denoted as PMo<sub>12</sub>) composites are developed as SIB anode materials for the first time. Unlike MIL-101 with large pore structures, the pores in flexible MIL-53 and MIL-88B swell spontaneously upon the accommodation of PMo<sub>12</sub>. Particularly, the PMo<sub>12</sub>/MIL-88B/GO composites deliver an excellent specific capacity of 214.2 mAh g<sup>-1</sup> for 600 cycles at 2.0 A g<sup>-1</sup>, with a high initial Coulombic efficiency (ICE) of 51.0%. The so-called "breathing effect" of flexible MOFs leads to the relatively tight confinement space for PMo<sub>12</sub>, which greatly modulates its electronic structure, affects the adsorption energy of Na<sup>+</sup>, and eventually reduces the trapping of sodium ions. Additionally, the straight and multidimensional channels in MIL-88B significantly accelerate ion diffusion, inducing favored energetic kinetics and thus generating high-rate performance.
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A Chromium Terephthalate-Based Solid with Unusually Large Pore Volumes and Surface Area
Gérard Férey, Caroline Mellot‐Draznieks, Christian Serre et al. · Science · 2005 · 5.2K citations · Full text
Christian Serre, Franck Millange, C. Thouvenot et al. · Journal of the American Chemical Society · 2002 · 1.9K citations
Engineering, Langmuir Surface Area, First Three-dimensional Chromium +22