Melegari Monica, Suman Michele, Pirondini Laura, Moiani Davide, Massera Chiara, Ugozzoli Franco, Kalenius Elina, Vainiotalo Pirjo, Mulatier Jean-Christophe, Dutasta Jean-Pierre, Dalcanale Enrico
Dipartimento di Chimica Organica ed Industriale and Unità INSTM, UdR Parma, Università degli Studi di Parma, Viale GP Usberti 17/a, 43100 Parma (Italy).
Chemistry. 2008;14(19):5772-9. doi: 10.1002/chem.200800327.
Phosphonate cavitands are an emerging class of synthetic receptors for supramolecular sensing. The molecular recognition properties of the third-generation tetraphosphonate cavitands toward alcohols and water at the gas-solid interface have been evaluated by means of three complementary techniques and compared to those of the parent mono- and diphosphonate cavitands. The combined use of ESI-MS and X-ray crystallography defined precisely the host-guest association at the interface in terms of type, number, strength, and geometry of interactions. Quartz crystal microbalance (QCM) measurements then validated the predictive value of such information for sensing applications. The importance of energetically equivalent multiple interactions on sensor selectivity and sensitivity has been demonstrated by comparing the molecular recognition properties of tetraphosphonate cavitands with those of their mono- and diphosphonate counterparts.
膦酸杯芳烃是一类新兴的用于超分子传感的合成受体。通过三种互补技术评估了第三代四膦酸杯芳烃在气固界面上对醇类和水的分子识别特性,并与母体单膦酸和双膦酸杯芳烃的特性进行了比较。电喷雾电离质谱(ESI-MS)和X射线晶体学的联合使用,从相互作用的类型、数量、强度和几何结构方面精确地定义了界面处的主客体缔合。然后,石英晶体微天平(QCM)测量验证了此类信息在传感应用中的预测价值。通过比较四膦酸杯芳烃与其单膦酸和双膦酸对应物的分子识别特性,证明了能量等效的多重相互作用对传感器选择性和灵敏度的重要性。