Lowry Troy W, Prommapan Plengchart, Rainer Quinn, Van Winkle David, Lenhert Steven
Department of Biological Science and Integrative Nanoscience Institute, Florida State University, 89 Chieftan Way, Tallahassee, FL 32304, USA.
Department of Physics, Florida State University, 77 Chieftan Way, Tallahassee, FL 32304, USA.
Sensors (Basel). 2015 Aug 21;15(8):20863-72. doi: 10.3390/s150820863.
Lipid multilayer gratings are recently invented nanomechanical sensor elements that are capable of transducing molecular binding to fluid lipid multilayers into optical signals in a label free manner due to shape changes in the lipid nanostructures. Here, we show that nanointaglio is suitable for the integration of chemically different lipid multilayer gratings into a sensor array capable of distinguishing vapors by means of an optical nose. Sensor arrays composed of six different lipid formulations are integrated onto a surface and their optical response to three different vapors (water, ethanol and acetone) in air as well as pH under water is monitored as a function of time. Principal component analysis of the array response results in distinct clustering indicating the suitability of the arrays for distinguishing these analytes. Importantly, the nanointaglio process used here is capable of producing lipid gratings out of different materials with sufficiently uniform heights for the fabrication of an optical nose.
脂质多层光栅是最近发明的纳米机械传感器元件,由于脂质纳米结构的形状变化,能够以无标记的方式将与流体脂质多层的分子结合转化为光信号。在此,我们表明,纳米凹版印刷适用于将化学性质不同的脂质多层光栅集成到一个能够通过光学鼻区分蒸汽的传感器阵列中。由六种不同脂质配方组成的传感器阵列被集成到一个表面上,并监测它们对空气中三种不同蒸汽(水、乙醇和丙酮)以及水下pH值随时间的光学响应。对阵列响应进行主成分分析,结果显示出明显的聚类,表明该阵列适用于区分这些分析物。重要的是,这里使用的纳米凹版印刷工艺能够用高度足够均匀的不同材料制造脂质光栅,用于制造光学鼻。