<p>Supramolecular nanoreactor as artificial mimetic enzyme is attracting a growing interest due to fine-tuned cavity and host-guest molecular recognition. Here, we design three 3d-4f metallo-supramolecular nanocages with different cavity sizes and active sites (<b>Zn</b><sub><b>2</b></sub><b>Er</b><sub><b>4</b></sub><b>L</b><sup><b>1</b></sup><sub><b>4</b></sub>, <b>Zn</b><sub><b>4</b></sub><b>Er</b><sub><b>6</b></sub><b>L</b><sup><b>2</b></sup><sub><b>6</b></sub>, and <b>Zn</b><sub><b>2</b></sub><b>Er</b><sub><b>8</b></sub><b>L</b><sup><b>3</b></sup><sub><b>8</b></sub>) based on a “bimetallic cluster cutting” strategy. Three nanocages exhibit a differential catalysis for the three-component aza-Darzens reaction without another additive, and only <b>Zn</b><sub><b>2</b></sub><b>Er</b><sub><b>8</b></sub><b>L</b><sup><b>3</b></sup><sub><b>8</b></sub> with the largest cavity and the most lanthanides centers has excellent catalytic conversion for monosubstituted and disubstituted <i>N</i>-aryl aziridine products. The host-guest relationship investigations confirm that <b>Zn</b><sub><b>2</b></sub><b>Er</b><sub><b>8</b></sub><b>L</b><sup><b>3</b></sup><sub><b>8</b></sub> significantly outperforms <b>Zn</b><sub><b>2</b></sub><b>Er</b><sub><b>4</b></sub><b>L</b><sup><b>1</b></sup><sub><b>4</b></sub> with the smaller cavity and <b>Zn</b><sub><b>4</b></sub><b>Er</b><sub><b>6</b></sub><b>L</b><sup><b>2</b></sup><sub><b>6</b></sub> with the fewer Lewis acidic sites in multi-component reaction is mainly attributed to the synergy of inherent confinement effect and multiple Lewis acidic sites in nanocage. The “bimetallic cluster cutting” strategy for the construction of 3d−4f nanocages with large windows may represent a potential approach to develop supramolecular nanoreactor with high catalytic efficiency.</p>

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Regulation of lanthanide supramolecular nanoreactors via a bimetallic cluster cutting strategy to boost aza-Darzens reactions

  • Jingzhe Li,
  • Manchang Kou,
  • Shengbin Zhou,
  • Fan Dong,
  • Xiaoyu Huang,
  • Xiaoliang Tang,
  • Yu Tang,
  • Weisheng Liu

摘要

Supramolecular nanoreactor as artificial mimetic enzyme is attracting a growing interest due to fine-tuned cavity and host-guest molecular recognition. Here, we design three 3d-4f metallo-supramolecular nanocages with different cavity sizes and active sites (Zn2Er4L14, Zn4Er6L26, and Zn2Er8L38) based on a “bimetallic cluster cutting” strategy. Three nanocages exhibit a differential catalysis for the three-component aza-Darzens reaction without another additive, and only Zn2Er8L38 with the largest cavity and the most lanthanides centers has excellent catalytic conversion for monosubstituted and disubstituted N-aryl aziridine products. The host-guest relationship investigations confirm that Zn2Er8L38 significantly outperforms Zn2Er4L14 with the smaller cavity and Zn4Er6L26 with the fewer Lewis acidic sites in multi-component reaction is mainly attributed to the synergy of inherent confinement effect and multiple Lewis acidic sites in nanocage. The “bimetallic cluster cutting” strategy for the construction of 3d−4f nanocages with large windows may represent a potential approach to develop supramolecular nanoreactor with high catalytic efficiency.