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首页> 外文期刊>Journal of porous materials >Influence of pore diameter on physical and sensing properties of free-standing Chitosan-Silica Nanocomposite membrane
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Influence of pore diameter on physical and sensing properties of free-standing Chitosan-Silica Nanocomposite membrane

机译:孔径对独立式壳聚糖 - 二氧化硅纳米复合膜的物理和传感性能的影响

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摘要

In this work, we have observed change in different physical properties and glucose sensing capability of Chitosan-Silica nanoparticle composite membranes (CSNCM) with pore diameter variation. For a particular mixture percentage of chitosan and SiNp dust, successful fabrication of deformation free, free-standing membrane formation was possible. Silica nanoparticles of three different sizes (NP1 similar to 100 nm, NP2 similar to 300 nm & NP3 similar to 500 nm) were prepared to produce CSNCM of corresponding pore sizes (CM1, CM2 and CM3 respectively). Hot NaOH etching was performed to induce surface pore in CSNCM matrix by dissolving Silica nanoparticles from the top layer. We have found that pore distribution, surface morphology, optical properties and dielectric properties are very much dependent on pore size of the membranes. For glucose sensing characterization, we have focussed on multi-parametric optical sensitivity of the membranes in presence of glucose molecules and found that, though all three membranes show response in one or more parameters, only CM2 membranes hold the capability to perform as a multi-parametric sensor in our optical sensing arrangement.
机译:在这项工作中,我们观察到壳聚糖 - 二氧化硅纳米粒子复合膜(CSNCM)的不同物理性质和葡萄糖感测能力的变化,具有孔径变化。对于特定的壳聚糖和SINP灰尘的特定混合物百分比,可以成功地制造无变形,自卸膜形成。制备三种不同尺寸的二氧化硅纳米粒子(类似于100nm,与300nm&NP3类似于类似于500nm的NP2)以产生相应孔径(Cm1,cm 2和cm 3)的CSNCM。通过从顶层溶解二氧化硅纳米颗粒,进行热NaOH蚀刻以诱导CSNCM基质中的表面孔。我们发现孔隙分布,表面形态,光学性质和介电性质非常依赖于膜的孔径。对于葡萄糖感测表征,我们侧重于葡萄糖分子存在下膜的多参数光学敏感性,并且发现,尽管所有三个膜在一个或多个参数中显示出响应,但只有CM2膜保持能力以作为多重光学传感布置中的参数传感器。

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