Sulfate-guided assembly of a fully closed {Mo192} molybdenum blue capsule with accessible Mo sites for selective phenol oxidation

Abstract Fully closed molybdenum blue cages remain difficult to prepare because long-range shell closure needs to be balanced with the stability of a mixed-valence MoVI/MoV framework. Retaining accessible surface metal sites adds a further challenge when such cages are considered for catalysis. Here we report a sulfate-guided fragment/anion co-assembly strategy for the synthesis of a capsule-shaped {Mo192} molybdenum blue cage, formulated as K6Na20[H44MoVI130MoV62O548(H2O)102(OH)44(SO4)10]·238H2O. The cluster is obtained from a Waugh-type K6MnMo9O32·6H2O precursor and molybdate under acidic, reducing, and hydrothermal conditions. Single-crystal X-ray diffraction reveals two fused {Mo96} half-shells, inward sulfate-bound {S-Mo6} units, equatorial {Mo2}-based connections, and continuous windows. The inward-facing sulfate ligands help support shell curvature without blocking the outer surface of the cage. Redox titration, bond-valence-sum analysis, and XPS indicate a mixed MoVI/MoV framework with an overall reduction degree of ca. 32%. The accessible mixed-valence cage was further evaluated in the tert-butyl hydroperoxide (TBHP) oxidation of 2-tert-butylphenol, giving 99% conversion and 99% selectivity for 2-tert-butyl-p-benzoquinone at 70 °C in 6 h. Hot-filtration, ICP-OES, recycling, FT-IR, and PXRD results support {Mo192} as the major recoverable catalytic phase. These results suggest that internal anion support is a useful way to assist the closure of giant POM cages while retaining surface accessibility for catalytic function.

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Publication Details

Journal
Polyoxometalates
Published
2026-09-01
DOI
https://doi.org/10.26599/pom.2026.9140158
Primary Topic
Polyoxometalates: Synthesis and Applications
Type
article
Field-Weighted Citation Impact
0.00

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article

Sulfate-guided assembly of a fully closed {Mo192} molybdenum blue capsule with accessible Mo sites for selective phenol oxidation

Jingyang Niu, Pengtao Ma, Jialiang Sun, Jingping Wang et al.
Polyoxometalates
Polyoxometalates: Synthesis and Applications
article

Sulfate-guided assembly of a fully closed {Mo192} molybdenum blue capsule with accessible Mo sites for selective phenol oxidation

Jingyang Niu, Pengtao Ma, Jialiang Sun, Jingping Wang, Chao Zhang, Haojie Xu, Huili Fan
article en

Abstract

Abstract Fully closed molybdenum blue cages remain difficult to prepare because long-range shell closure needs to be balanced with the stability of a mixed-valence MoVI/MoV framework. Retaining accessible surface metal sites adds a further challenge when such cages are considered for catalysis. Here we report a sulfate-guided fragment/anion co-assembly strategy for the synthesis of a capsule-shaped {Mo192} molybdenum blue cage, formulated as K6Na20[H44MoVI130MoV62O548(H2O)102(OH)44(SO4)10]·238H2O. The cluster is obtained from a Waugh-type K6MnMo9O32·6H2O precursor and molybdate under acidic, reducing, and hydrothermal conditions. Single-crystal X-ray diffraction reveals two fused {Mo96} half-shells, inward sulfate-bound {S-Mo6} units, equatorial {Mo2}-based connections, and continuous windows. The inward-facing sulfate ligands help support shell curvature without blocking the outer surface of the cage. Redox titration, bond-valence-sum analysis, and XPS indicate a mixed MoVI/MoV framework with an overall reduction degree of ca. 32%. The accessible mixed-valence cage was further evaluated in the tert-butyl hydroperoxide (TBHP) oxidation of 2-tert-butylphenol, giving 99% conversion and 99% selectivity for 2-tert-butyl-p-benzoquinone at 70 °C in 6 h. Hot-filtration, ICP-OES, recycling, FT-IR, and PXRD results support {Mo192} as the major recoverable catalytic phase. These results suggest that internal anion support is a useful way to assist the closure of giant POM cages while retaining surface accessibility for catalytic function.

Polyoxometalates
Henan University (CN)
National Natural Science Foundation of China
Openalex Percentile: Top 24%
Polyoxometalates: Synthesis and Applications
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Sulfate-guided assembly of a fully closed {Mo192} molybdenum blue capsule with accessible Mo sites for selective phenol oxidation — Jingyang Niu, Pengtao Ma, et al. · Polyoxometalates (2026) | TGRS Research Map | TGRS