Issue 57, 2025, Issue in Progress

Fabrication of copper silicate microspheres using rice husk ash and its application for dearomatization of phenol derivatives

Abstract

In the present study, tubular copper silicate microspheres (CuSi-NTMs) were hydrothermally synthesized using high-silicon rice husk ash (RHA) as the raw material. Structural characterization reveals CuSi-NTMs have abundant mesopores, with a larger pore volume (0.367 cm3 g−1) and specific surface area (375 m2 g−1) than the precursor RHA, facilitating active component dispersion. As expected, CuSi-NTMs exhibited superior catalytic performance in the dearomatization reaction between phenol derivatives and azodicarboxylates compared to other copper-based catalysts, achieving a 98% yield. The steric hindrance and electronic effects of phenolic substituents were also investigated. An ionic catalytic mechanism for CuSi-NTMs has been proposed. Cu(II) coordinates with the phenolic hydroxyl group to activate its para-position. Then, the activated phenol undergoes a Michael addition with the N[double bond, length as m-dash]N group and deprotonates, resulting in the formation of cyclohexadienone derivatives. Additionally, preparative scale synthesis of cyclohexadieneone has been demonstrated.

Graphical abstract: Fabrication of copper silicate microspheres using rice husk ash and its application for dearomatization of phenol derivatives

Supplementary files

Article information

Article type
Paper
Submitted
27 Nov 2025
Accepted
04 Dec 2025
First published
12 Dec 2025
This article is Open Access
Creative Commons BY-NC license

RSC Adv., 2025,15, 49557-49564

Fabrication of copper silicate microspheres using rice husk ash and its application for dearomatization of phenol derivatives

N. Li, L. Su, H. Wang, H. Li, Q. Shen and X. Han, RSC Adv., 2025, 15, 49557 DOI: 10.1039/D5RA09185C

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