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首页> 外文期刊>Applied Surface Science >Molecular imprinting of hemispherical pore-structured thin films via colloidal lithography for gaseous formaldehyde Gravimetric sensing
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Molecular imprinting of hemispherical pore-structured thin films via colloidal lithography for gaseous formaldehyde Gravimetric sensing

机译:通过胶体光刻对半球形孔结构薄膜进行分子印迹,用于气态甲醛重量传感

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摘要

In this study, formaldehyde (HCHO)-imprinted hemispherical pore-patterned thin films, consisting of poly(2-(trifluoromethyl)acrylic acid-co-ethylene glycol dimethacrylate-co-styrene) (poly (TFMAA-co-EGDMA-co-ST)), were fabricated using the design of molecularly imprinted polymers (MIPs) and a subsequent lithographic micro/nanoimprinting method to amplify HCHO sensing signals in quartz crystal microbalance (QCM) sensors. Its molecular imprinting condition was optimized by controlling the added amount of a ST monomer in a MIP precursor solution. From the resonant frequency change with respect to HCHO adsorption, the imprinting factor of the porous MIP film was calculated to have a value of 2.38 and the sensitivity (0.132 mg g(-1) ppm(-1) ) of the porous MIP film exhibited markedly improved characteristics with respect to the porous non-imprinted polymer (NIP) film (0.05 mg g(-1) ppm(-1)). The selectivity of the MIP-QCM sensors for the detection of HCHO was examined in the presence of other analogous toxic gases such as hydrogen chloride and hydrogen fluoride. The HCHO-absorbed porous MIP film had higher selective features with selectivity coefficients (k* approximate to 3.83 (HCl) and 4.46 (HF)) than porous NIP films (k* approximate to 1.53 (HCl) and 2.20 (HF)). Moreover, the relative selectivity of the porous MIP film appeared to be 2.03-2.5, which was higher than those of the planar MIP film (1.70-1.73).
机译:在该研究中,由聚(2-(三氟甲基)丙烯酸 - 共乙二醇二甲基丙烯酸酯 - 共苯乙烯)组成的甲醛(HCHO)-Imprinted半球形孔隙图案薄膜(Poly(TFMAA-Co-EGDMA-CO- ST))使用分子印迹聚合物(MIPS)的设计和随后的光刻微/纳米修印方法制造,以扩增石英晶体微稳定(QCM)传感器中的HCHO感测信号。通过控制MIP前体溶液中的ST单体的添加量来优化其分子印迹条件。从相对于HCHO吸附的谐振频率变化,计算多孔覆膜膜的压印因子以具有2.38的值,并且具有表现出多孔覆膜膜的灵敏度(0.132mg g(-1)ppm(-1))相对于多孔非印记聚合物(NIP)膜(0.05mg(-1)ppm(-1))显着改善了特性。在存在其他类似的有毒气体如氯化氢和氟化氢的情况下,检查用于检测Hcho的MIP-QCM传感器的选择性。 Hcho吸收的多孔覆膜膜具有较高的选择性特征,具有比多孔凝乳膜(K *近似为1.53(HCl)和2.20(HF))的选择性系数(K *近似为3.83(HCl)和4.46(HF))。此外,多孔壁膜的相对选择性似乎为2.03-2.5,其高于平面覆膜膜(1.70-1.73)。

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