| نویسندگان | نازلی کیان ارثی,مسلم ستوده خواه |
| نشریه | Journal of Inorganic and Organometallic Polymers and Materials |
| شماره صفحات | 1 |
| شماره مجلد | 1 |
| ضریب تاثیر (IF) | ثبت نشده |
| نوع مقاله | Full Paper |
| تاریخ انتشار | 2026-07-17 |
| رتبه نشریه | علمی - پژوهشی |
| نوع نشریه | الکترونیکی |
| کشور محل چاپ | ایران |
| نمایه نشریه | JCR ,SCOPUS |
| کلید واژه ها | Green oxidation · Benzyl alcohol oxidation · Heterogeneous catalysis · Chitosan immobilization · Oxovanadium(IV) complex |
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چکیده مقاله
This study presents the rational design and synthesis of a novel heterogeneous nanocatalyst, CSBs@V (Chitosan@
VO[(acac)2en]), constructed through a three-step, energy-efficient protocol: (i) solvent-free condensation of acetylacetone
with ethylenediamine to generate an aliphatic Schiff base ligand, (ii) immobilization onto chitosan via methanol-mediated
reflux,
and
(iii)
coordination
of
oxovanadium(IV)
to
afford
a
chitosan-anchored
VO(acac)2-Schiff
base
nanohybrid.
Comprehensive
characterization by FT-IR, FE-SEM/EDX, TEM, BET, TGA, and elemental mapping confirms uniform
dispersion of vanadium active sites within the chitosan scaffold, mesoporous textural features, and high thermal stability.
Under optimized conditions (70 °C, TBHP, acetonitrile), CSBs@V achieves selective oxidation of benzyl alcohol
to benzaldehyde with 88–98% isolated yield at 0.14 mol% V loading, with > 95% selectivity and rapid conversion. The
catalyst retains > 87% of its initial activity over five consecutive cycles, with only minor vanadium leaching (~ 7%) and
preserved morphology upon reuse. Key advantages include a biodegradable chitosan support, mild reaction conditions,
facile catalyst recovery, and minimal metal leaching. The synergy between vanadium redox chemistry and the sustainable
polysaccharide framework offers a scalable, eco-friendly platform for green oxidation catalysis, providing a robust
foundation for mechanistic studies, substrate expansion, and industrial implementation.