生体イオンチャネルを模倣した単一ファイル経路による精密金属分離技術を開発(Mimicking Biological Ion Channels, Researchers Build “Single-File” Pathways for Precise Metal Separation)

2026-014-16 中国科学院(CAS)

中国科学院 青島バイオエネルギー・バイオプロセス研究所の研究チームは、生体のカルシウムイオンチャネルを模倣し、単一列(single-file)で金属イオンを輸送するナノチャネル膜を開発した(Nature Nanotechnology掲載)。共有結合性有機構造体(COF)により約1.4nmの狭い通路を形成し、特定イオンのみを選択的に通す仕組みを実現。アミドキシム基を導入することでウランを高選択的に捕捉し、他元素を排除しつつ高速輸送を可能にした。海水中で22日間の連続試験でも高効率抽出を達成し、従来法を大きく上回る性能を示した。さらに銅や金にも応用可能で、持続可能な資源回収技術として期待される。

<関連情報>

生物学的イオンチャネルに着想を得た膜を用いた、多用途な重金属イオン分離 Versatile heavy metal ion separation via biological ion-channel-inspired membranes

Yongye Zhao,Hongfei Gao,Lei Yu,Qi Li,Chaoxu Li,Lei Jiang & Jun Gao
Nature Nanotechnology  Published:16 April 2026
DOI:https://doi.org/10.1038/s41565-026-02147-8

生体イオンチャネルを模倣した単一ファイル経路による精密金属分離技術を開発(Mimicking Biological Ion Channels, Researchers Build “Single-File” Pathways for Precise Metal Separation)

Abstract

Solvent extraction and adsorption methods are predominantly used to extract heavy metal ions by binding them selectively. However, these methods require excessive chemical use and cause environmental problems. The membrane separation method avoids these problems but remains poorly compatible with heavy metal ions. In nature, biological CaV channels allow selectively bound ions (Ca2+) to rapidly and selectively permeate by exploiting the repulsive interactions between single-file ions and the anomalous mole fraction effect. Here, inspired by these channels, we demonstrate a general strategy that can transform adsorptive materials into separation membranes for heavy metal ion separation. The membranes consist of channels that can adsorb target ions in a single file. Using uranium-adsorption channels, uranium separation via the membrane was achieved, demonstrating a uranium/vanadium selectivity of 734 in real seawater and a throughput far exceeding that of previous materials. This strategy is further generalized to the separation of rare earth metals, copper and gold. Moreover, this strategy unifies the adsorption and membrane separation methods, and can also transform separation membranes to adsorbents, showing notably enhanced capacity and selectivity by rejecting the entering of competing ions, reducing the environmental impact of the adsorption method.

0505化学装置及び設備
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