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- Machine learning assisted discovery of high-efficiency self-healing epoxy coating for corrosion protection
- Naturally effective inhibition of microbial corrosion on carbon steel by beneficial biofilm in the South China Sea
- Continuous Wave Measurements Collected in Intermediate Depth throughout the North Sea Storm Season during the RealDune/REFLEX Experiments
- Towards weathering and corrosion resistant, self-warning and self-healing epoxy coatings with tannic acid loaded nanocontainers
- Data-driven corrosion inhibition efficiency prediction model incorporating 2D–3D molecular graphs and inhibitor concentration
- Self-healing and corrosion-sensing coatings based on pH-sensitive MOF-capped microcontainers for intelligent corrosion control
- Direct microbial electron uptake as a mechanism for stainless steel corrosion in aerobic environments
- Smart protective coatings with self‐sensing and active corrosion protection dual functionality from pH-sensitive calcium carbonate microcontainers
- The effect of riboflavin on the microbiologically influenced corrosion of pure iron by Shewanella oneidensis MR-1
- Acceleration of corrosion of 304 stainless steel by outward extracellular electron transfer of Pseudomonas aeruginosa biofilm
- Cross-category prediction of corrosion inhibitor performance based on molecular graph structures via a three-level message passing neural network model
- Dual-action self-healing protective coatings with photothermal responsive corrosion inhibitor nanocontainers
- Long-term deterioration of lubricant-infused nanoporous anodic aluminium oxide surface immersed in NaCl solution
- Adaptive bidirectional extracellular electron transfer during accelerated microbiologically influenced corrosion of stainless steel
- Towards understanding and prediction of atmospheric corrosion of an Fe/Cu corrosion sensor via machine learning
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