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Molecular Design of Intercalation-Based Sensors. 1. Ammonia Sensing with Quartz Crystal Microbalances Modified by Copper Biphenylbis(phosphonate) Thin Films

机译:基于插层的传感器的分子设计。 1.联苯双膦酸铜薄膜修饰的石英晶体微天平上的氨感测

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By combining the shape-selective intercalation reachtion of ammonia into copper biphenylbis(phosphonate) with the nanogram sensitivitiy of the quartz cryatal microbalance (QCM),it is possible to quartz ammonia at gas-phase concentrations of 0.01-25%. Anhydrous copper biphenylbis(phosphonate), Cu↓(2)(O↓(3)PC↓(6)H↓(4)-)2, precipitates as lamellar microcrystals when solutions of Cu↑(2+) and biphenylbis(phosphonic acid) are combined, and its structure is closely relates to that or Cu(O↓(3)PC↓(6)H↓(5)). Well-ordered and oriented thin films of this material were assembled on the go1d electrodes of QCM devices by sequential adsorption of copper salts and biphenylbis(phosphonic acid). Ammonia intercalation occurs at two sites on the lattice copper atoms one of which is irreversible at room temperature. Larger Lewis bases, such as butylamine isomers ,are substantially excluded from the ammonia binding sites. The transport of ammonia into the films, which was monitored by the frequency change of the QCM device, is characterized by an effective diffusion coefficient of 5.6×10↑(-9)cm↑(2)/s. With ultrathin (<70 A) selfassembled films,the device reponse is relatively rapid and the ammonia intercalation reaction is 90% complete in 90 s or less.
机译:通过将氨的形状选择插入范围与石英晶体微量天平(QCM)的纳克灵敏度相结合,可以合成出浓度为0.01-25%的石英氨。无水联苯双膦酸铜,Cu↓(2)(O↓(3)PC↓(6)H↓(4)-)2,当Cu↑(2+)和联苯双膦酸溶液时沉淀为层状微晶)结合在一起,其结构与Cu(O↓(3)PC↓(6)H↓(5))密切相关。通过依次吸附铜盐和联苯双(膦酸),将这种材料的排列整齐且取向良好的薄膜组装在QCM器件的电极上。氨插层发生在晶格铜原子上的两个位置,其中一个在室温下不可逆。较大的路易斯碱,例如丁胺异构体,基本上不包含在氨结合位点中。通过QCM装置的频率变化监测氨向薄膜中的传输,其有效扩散系数为5.6×10↑(-9)cm↑(2)/ s。使用超薄(<70 A)自组装薄膜,设备响应速度相对较快,并且氨插入反应在90 s或更短时间内即可完成90%。

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