Hang Xinxin, Wang Shentang, Pang Huan, Xu Qiang
School of Chemistry and Chemical Engineering, Institute for Innovative Materials and Energy, Yangzhou University Yangzhou 225002 P. R. China
School of Chemistry and Chemical Engineering, Chongqing Key Laboratory of Soft-Matter Material Chemistry and Function Manufacturing, Southwest University Chongqing 400715 P. R. China
Chem Sci. 2021 Dec 7;13(2):461-468. doi: 10.1039/d1sc05407d. eCollection 2022 Jan 5.
Ultrafine metal nanoparticles (MNPs) with size <2 nm are of great interest due to their superior catalytic capabilities. Herein, we report the size-controlled synthesis of gold nanoparticles (Au NPs) by using a thiacalixarene-based coordination cage CIAC-108 as a confined host or stabilizer. The Au NPs encapsulated within the cavity of CIAC-108 (Au@CIAC-108) show smaller size (∼1.3 nm) than the ones (∼4.7 nm) anchored on the surface of CIAC-108 (Au/CIAC-108). The cage-embedded Au NPs can be used as a homogeneous catalyst in a mixture of methanol and dichloromethane while as a heterogeneous catalyst in methanol. The homogeneous catalyst Au@CIAC-108-homo exhibits significantly enhanced catalytic activities toward nitroarene reduction and organic dye decomposition, as compared with its larger counterpart Au/CIAC-108-homo and its heterogeneous counterpart Au@CIAC-108-hetero. More importantly, the as-prepared Au@CIAC-108-homo possesses remarkable stability and durability.
尺寸小于2纳米的超细金属纳米颗粒(MNPs)因其卓越的催化能力而备受关注。在此,我们报道了通过使用基于硫杂杯芳烃的配位笼CIAC-108作为受限主体或稳定剂来进行尺寸可控的金纳米颗粒(Au NPs)合成。封装在CIAC-108腔内的Au NPs(Au@CIAC-108)显示出比锚定在CIAC-108表面的Au NPs(Au/CIAC-108)更小的尺寸(约1.3纳米)。嵌入笼中的Au NPs在甲醇和二氯甲烷的混合物中可用作均相催化剂,而在甲醇中用作多相催化剂。与更大的对应物Au/CIAC-108 - homo及其多相对应物Au@CIAC-108 - hetero相比,均相催化剂Au@CIAC-108 - homo对硝基芳烃还原和有机染料分解表现出显著增强的催化活性。更重要的是,所制备的Au@CIAC-108 - homo具有卓越的稳定性和耐久性。