Abstract
The toxicity of heavy metals in water sources requires the use of sensitive devices capable of detecting levels in the parts-per-billion (ppb) range. In this study, meta-chemical surface (MCS-Bi and MCS-Hg) sensors were developed using dip-pen nanolithography (DPN), which enhanced the detection of Cd(II), Pb(II), and Cu(II) at ppb levels, due to DPN's unique ability to control the surface-to-volume (S/V) ratio of patterned nanoclusters. The density functional theory results indicate that the binding strengths between the heavy metals and the active species (Hg and Bi) are comparable. The difference in the S/V ratio affects the detection limit (0.26 ± 0.04 and 0.52 ± 0.02 ppb for MCS-Bi and MCS-Hg, respectively). This finding highlights the relevance of MCS sensors to the environmental field, their enhanced detection capabilities for toxic materials, and the reduced use of hazardous materials like mercury. The results provide a concrete methodology for reducing the toxicity of analytical devices without compromising sensitivity.
| Original language | English |
|---|---|
| Article number | 116922 |
| Journal | iScience |
| Volume | 29 |
| Issue number | 8 |
| DOIs | |
| State | Published - 21 Aug 2026 |
Keywords
- Density functional theory
- DPN
- electrochemical sensors
- Environmental monitoring
- heavy metal sensors
- meta-chemical surfaces
- Sensor
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