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用于发酵工程中乙醇浓度传感的仿生比色双反蛋白石光子晶体指示剂

Bioinspired Colorimetric Double Inverse Opal Photonic Crystal Indicators for Ethanol Concentration Sensing in Fermentation Engineering.

作者信息

Yuan Hang, Qi Yong, Niu Wenbin, Ma Wei, Zhang Shufen

机构信息

State Key Laboratory of Fine Chemicals, Frontier Science Center for Smart Materials, Dalian University of Technology, Dalian 116024, China.

出版信息

Langmuir. 2024 May 28;40(21):11184-11195. doi: 10.1021/acs.langmuir.4c00823. Epub 2024 May 15.

DOI:10.1021/acs.langmuir.4c00823
PMID:38748593
Abstract

Photonic crystal-based ethanol concentration indicators with rapid response and brilliant structural color output definitely take a place in colorimetric sensors. Here, based on the H-bond-regulated swelling of acrylate shape memory polymers (SMPs) and the solvent-induced structural color change of the double inverse opal photonic crystals (DIOPCs), new-type photonic crystals (PCs) colorimetric indicators were constructed, exhibiting a span of maximum reflection wavelength (λ) up to ∼166 nm in response to alcohols with concentrations from 0 to 100 vol %. DIOPC indicators (DIOPCIs) show a rapid response to alcohols (<1.5 s) and output different structural colors (covering from blue to red). The colorimetric sensing mechanism includes the solvent-triggered recovery of the inverse opal skeleton, the cosolvency effect and H-bonds induced swelling/shrinkage of the polymer, the phase separation between polystyrene (PS) microsphere and polymer skeleton, and the light diffraction of DIOPCs. While ensuring a larger λ span by regulating the H-bond interactions in polymer chains through acrylamide (AAm), AAm-modified DIOPCIs are sensitive to some specific ethanol concentrations. The real-time sensing of ethanol concentration during fermentation verified the practicability of DIOPCIs, thus establishing a visual model between structural color and corresponding fermentation kinetics. We envisage that the DIOPCIs will contribute to the intelligentization of the alcoholic fermentation and distillation industry.

摘要

具有快速响应和出色结构色输出的基于光子晶体的乙醇浓度指示剂在比色传感器领域占有一席之地。在此,基于丙烯酸酯形状记忆聚合物(SMPs)的氢键调节溶胀以及双反蛋白石光子晶体(DIOPCs)的溶剂诱导结构色变化,构建了新型光子晶体(PCs)比色指示剂,其在响应浓度为0至100体积%的醇类时,最大反射波长(λ)跨度高达约166 nm。DIOPC指示剂(DIOPCIs)对醇类显示出快速响应(<1.5秒)并输出不同的结构色(涵盖从蓝色到红色)。比色传感机制包括溶剂触发的反蛋白石骨架恢复、共溶剂效应以及氢键诱导的聚合物溶胀/收缩、聚苯乙烯(PS)微球与聚合物骨架之间的相分离以及DIOPCs的光衍射。通过丙烯酰胺(AAm)调节聚合物链中的氢键相互作用在确保更大λ跨度的同时,AAm修饰的DIOPCIs对某些特定乙醇浓度敏感。发酵过程中乙醇浓度的实时传感验证了DIOPCIs的实用性,从而建立了结构色与相应发酵动力学之间的可视化模型。我们设想DIOPCIs将有助于酒精发酵和蒸馏行业的智能化。

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