A CO<sub>2</sub>-responsive hydrogel film for optical sensing of dissolved CO<sub>2</sub>.
basic_science · Level V
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- Record sourced from PubMed, PMID 31282902.
- Also identified by DOI 10.1039/c9sm00958b.
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Abstract
CO<sub>2</sub>-monitoring plays an important role in medicine, environmental sciences, and food industries. Here, a new CO<sub>2</sub>-responsive hydrogel film was fabricated from branched polyethyleneimine (BPEI) and partially oxidized dextran (PO-Dex) via layer-by-layer (LBL) assembly, based on the in situ Schiff base reaction between the two polymers. The swelling behaviours of the films were studied using Fabry-Perot fringes on their reflection spectra. Like ordinary hydrogels, the BPEI/PO-Dex films swell in water. In addition, they swell to a larger degree when CO<sub>2</sub> is introduced, due to the reaction between CO<sub>2</sub> and the amino groups in BPEI. The CO<sub>2</sub>-induced swelling can be reported by the shift of the Fabry-Perot fringes on their reflection spectra; therefore, the BPEI/PO-Dex film can be used as an optical sensor for dissolved CO<sub>2</sub>. In the new sensor, the BPEI/PO-Dex film acts as a CO<sub>2</sub>-sensing material and Fabry-Perot cavity simultaneously. The introduction of ordered structure is no longer required. The response of the sensor to CO<sub>2</sub> is linear and reversible. Unlike other hydrogel-based sensors that suffer from a slow response, the new sensor can respond to CO<sub>2</sub> quickly, making it applicable for real-time, continuous monitoring of CO<sub>2</sub> levels in solution.