<p>A highly efficient magnetic nanocatalyst has been developed by covalently grafting a Pd(0)-Sb@A complex onto a silica-coated nickel ferrite support. This innovative nanocatalyst has been thoroughly analyzed using various techniques, including FT-IR, VSM, XRD, ICP, EDX, XPS, TEM, and FE-SEM. Its performance was then evaluated in the synthesis of symmetrical sulfides and unsymmetrical ether derivatives. Key advantages of this approach include high product yields, reduced reaction times, straightforward synthesis, easy magnetic separation, and excellent catalyst recoverability, maintaining activity for at least four cycles without notable degradation.</p>

错误:搜索内容不能为空,请输入英文关键词
错误:关键词超出字数限制,请精简
高级检索

Pd(0)-Sb@A@SiO2@NiFe2O4 yolk-shell nanostructures as an effective and reusable nanocatalyst for the synthesis of symmetrical sulfides and unsymmetrical ethers

  • Anjan Kumar,
  • Ahmed M. Naglah,
  • Chou-Yi Hsu,
  • Jayanti Makasana,
  • Suhas Ballal,
  • Munther Kadheem,
  • Abhayveer Singh,
  • T. Krithiga,
  • Swati Mishra,
  • Pushpa Negi Bhakuni

摘要

A highly efficient magnetic nanocatalyst has been developed by covalently grafting a Pd(0)-Sb@A complex onto a silica-coated nickel ferrite support. This innovative nanocatalyst has been thoroughly analyzed using various techniques, including FT-IR, VSM, XRD, ICP, EDX, XPS, TEM, and FE-SEM. Its performance was then evaluated in the synthesis of symmetrical sulfides and unsymmetrical ether derivatives. Key advantages of this approach include high product yields, reduced reaction times, straightforward synthesis, easy magnetic separation, and excellent catalyst recoverability, maintaining activity for at least four cycles without notable degradation.