Mn-Based Mullites for Environmental and Energy Applications.

Li, Huan; Wang, Wanying; Xu, Jinchao; Wang, Ansheng; Wan, Xiang; Yang, Liyuan; Zhao, Haojun; Shan, Qingyu et al. · Adv Mater · 2024

basic_science · Level V

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Abstract

Mn-based mullite oxides AMn<sub>2</sub>O<sub>5</sub> (A = lanthanide, Y, Bi) is a novel type of ternary catalyst in terms of their electronic and geometric structures. The coexistence of pyramid Mn<sup>3+</sup>-O and octahedral Mn<sup>4+</sup>-O makes the d-orbital selectively active toward various catalytic reactions. The alternative edge- and corner-sharing stacking configuration constructs the confined active sites and abundant active oxygen species. As a result, they tend to show superior catalytic behaviors and thus gain great attention in environmental treatment and energy conversion and storage. In environmental applications, Mn-based mullites have been demonstrated to be highly active toward low-temperature oxidization of CO, NO, volatile organic compounds (VOCs), etc. Recent research further shows that mullites decompose O<sub>3</sub> and ozonize VOCs from -20 °C to room temperature. Moreover, mullites enhance oxygen reduction reactions (ORR) and sulfur reduction reactions (SRR), critical kinetic steps in air-battery and Li-S batteries, respectively. Their distinctive structures also facilitate applications in gas-sensitive sensing, ionic conduction, high mobility dielectrics, oxygen storage, piezoelectricity, dehydration, H<sub>2</sub>O<sub>2</sub> decomposition, and beyond. A comprehensive review from basic physicochemical properties to application certainly not only gains a full picture of mullite oxides but also provides new insights into designing heterogeneous catalysts.