星形ナノ材料がエネルギー貯蔵特性を変える(More than a pretty picture, star-shaped nanomaterial changes energy storage)

2026-04-06 バッファロー大学(UB)

米国のUniversity at Buffaloの研究チームは、星形構造を持つ新しいナノ材料を開発し、エネルギー貯蔵性能を大幅に向上させる可能性を示した。この材料は表面積が大きく、イオンの移動効率が高いため、バッテリーやスーパーキャパシタの充放電速度や容量を改善できる。特に電極材料として有望で、従来材料に比べて高い安定性と効率を両立する点が特徴である。研究は、再生可能エネルギーの蓄電技術や電気自動車の性能向上に貢献する可能性があり、次世代エネルギー技術の重要な基盤となると期待されている。

星形ナノ材料がエネルギー貯蔵特性を変える(More than a pretty picture, star-shaped nanomaterial changes energy storage)
A scanning electron microscope image reveals particles of vanadyl hydroxide (VOOH) shaped like stars. The team of Luis De Jesús Báez found that these particles behaved more like a pseudocapacitor than a battery. Photo: Luis De Jesús Báez/University at Buffalo

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六重腕形態を有する水酸化バナジル(VOOH)の結晶成長について On the crystal growth of vanadyl hydroxide (VOOH) with six-fold arms morphology

Jayanti Sharma,Thomas J. Kolpack,Karla M. Pérez Colón,Mayuresh Janpandit,Chloe Viyannalage,Yuguang C. Li and Luis R. De Jesús Báez
Nanoscale  Published:03 Nov 2025
DOI:https://doi.org/10.1039/D5NR02771C

Abstract

Fundamental understanding of microstructure evolution during nucleation and growth of ternary materials is of utmost importance for the development of the next generation of functional devices. Case in point, growth of semiconducting particles with six-fold symmetry, star-shaped, could serve as an innovative morphology for application in neuromorphic, energy storage, and heterogenous catalysis devices. Herein, we present the discovery of how the synthetic route to produce orthorhombic star-shaped vanadyl hydroxide (VOOH) by using a hydrothermal reaction of orthovanadate and thioacetamide in an alkaline solution is highly dependent on time. For example, we observe that at 36 h, we produce VS2 nanosheets with VOOH at the surface. A 60 h of reaction produce VOOH rods clustered in a single nucleating point and at 84 h of reaction VOOH stars can be observed in combination of clustered materials. Our current hypothesis stands that the clustered rods are a product of a condensation reaction between the vanadate precursor whereas the stars are seeded by the hexagonal symmetry of VS2 and further oxygenation and reduction of the vanadium center. Furthermore, we also elucidate the fundamental electrochemical behavior of these nanoparticles as capacitive electrodes for sodium-ion devices.

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