School of Physics & Clinical & Optometric Sciences, Technological University of Dublin, Kevin Street, D08NF82 Dublin, Ireland.
Insight Centre for Data Analytics, National Centre for Sensor Research, Dublin City University, 9 Dublin, Ireland.
Sensors (Basel). 2020 Feb 6;20(3):854. doi: 10.3390/s20030854.
The high sensitivity of silicon microcantilever sensors has expanded their use in areas ranging from gas sensing to bio-medical applications. Photochromic molecules also represent promising candidates for a large variety of sensing applications. In this work, the operating principles of these two sensing methods are combined in order to detect the reversible conformational change of a molecular switch, spiropyran. Thus, arrays of silicon microcantilever sensors were functionalized with spiropyran on the gold covered side and used as test microcantilevers. The microcantilever deflection response was observed, in five sequential cycles, as the transition from the spiropyran (SP) (CLOSED) to the merocyanine (MC) (OPEN) state and vice-versa when induced by UV and white light LED sources, respectively, proving the reversibility capabilities of this type of sensor. The microcantilever deflection direction was observed to be in one direction when changing to the MC state and in the opposite direction when changing back to the SP state. A tensile stress was induced in the microcantilever when the SP to MC transition took place, while a compressive stress was observed for the reverse transition. These different type of stresses are believed to be related to the spatial conformational changes induced in the photochromic molecule upon photo-isomerisation.
硅微悬臂梁传感器的高灵敏度扩展了它们在从气体传感到生物医学应用等领域的应用。光致变色分子也代表了各种传感应用的有前途的候选者。在这项工作中,这两种传感方法的工作原理结合在一起,以检测分子开关螺吡喃的可逆构象变化。因此,硅微悬臂梁传感器阵列在金覆盖的一侧功能化了螺吡喃,并用作测试微悬臂梁。观察到微悬臂梁的挠度响应,在五个连续循环中,当分别由 UV 和白色 LED 光源诱导时,从螺吡喃(SP)(CLOSED)到变色酸(MC)(OPEN)状态的转变,反之亦然,证明了这种类型的传感器的可逆性能力。当微悬臂梁转换为 MC 状态时,观察到微悬臂梁的挠度方向为一个方向,而当微悬臂梁转换回 SP 状态时,挠度方向为相反方向。当 SP 到 MC 的转变发生时,在微悬臂梁中诱导出拉伸应力,而对于相反的转变,则观察到压缩应力。据信,这些不同类型的应力与光致变色分子在光异构化过程中引起的空间构象变化有关。