J. Mater. Sci. Technol. ›› 2026, Vol. 261: 229-241.DOI: 10.1016/j.jmst.2025.10.025

• Research article • Previous Articles     Next Articles

Roles of oxygen groups in corrosion and scale inhibition efficiency of carbon dots derived from camellia oleifera shells

Shuli Lia,b, Xianghong Lia,b,*, Jianyong Wana, Ping Wanga, Fuping Lia, Shuduan Denga,b,*   

  1. aCollege of Materials and Chemical Engineering, Southwest Forestry University, Kunming 650224, China;
    bKey Laboratory of Yunnan Provincial Department of Education on Highly-Efficient Utilization of Agricultural and Forest Wastes, Southwest Forestry University, Kunming 650224, China
  • Received:2025-07-24 Revised:2025-09-18 Accepted:2025-10-06 Published:2025-10-25 Online:2025-10-25
  • Contact: *E-mail addresses: xianghong-li@163.com (X. Li), dengshuduan@163.com (S. Deng).

Abstract: Carbon dots (CDs) exhibit significant potential for inhibiting equipment corrosion and scaling in desalination and seawater cooling systems. However, the anti-scaling or anti-corrosion dual functionalities of biomass-derived CDs have rarely been explored, and the structure-property relationships remain poorly understood due to structural complexity. Herein, we propose an oxygen functional group regulation strategy to elucidate the structure-performance relationship of camellia oleifera shell-derived CDs for dual anti-scaling and anti-corrosion applications. Multiscale characterization reveals that these CDs feature N/O self-doping and oxygen-rich surface functional groups, and identifies the critical roles of functional groups (e.g., -OH, -COOH, -CH3O, and -CHO) in modulating CDs’ performance. The active sites of CDs are primarily localized on C atoms adjacent to N/O-doped regions. These functional groups enhance CDs stability without altering the active site distribution, while simultaneously optimizing local charge density and adsorption capacity. CDs show 91.35 % corrosion inhibition on steel at 30 °C (240 mg L-1) and 92.71 % scale inhibition against CaCO3 at 60 °C after 9 h. Notably, CDs substituted with -COOH may offer the best anticorrosion performance, while those with -OH groups may be more effective in scale inhibition.

Key words: Camellia oleifera shells (COS), Carbon dots (CDs), Corrosion inhibition, CaCO3 scale inhibition, Molecular dynamics simulation