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Gold thiolate and photochemically functionalized microcantilevers using molecular recognition agents

机译:硫醇金和使用分子识别剂的光化学官能化微悬臂梁

摘要

Highly sensitive sensor platforms for the detection of specific reagents, such as chromate, gasoline and biological species, using microcantilevers and other microelectromechanical systems (MEMS) whose surfaces have been modified with photochemically attached organic monolayers, such as self-assembled monolayers (SAM), or gold-thiol surface linkage are taught. The microcantilever sensors use photochemical hydrosilylation to modify silicon surfaces and gold-thiol chemistry to modify metallic surfaces thereby enabling individual microcantilevers in multicantilever array chips to be modified separately. Terminal vinyl substituted hydrocarbons with a variety of molecular recognition sites can be attached to the surface of silicon via the photochemical hydrosilylation process. By focusing the activating UV light sequentially on selected silicon or silicon nitride hydrogen terminated surfaces and soaking or spotting selected metallic surfaces with organic thiols, sulfides, or disulfides, the microcantilevers are functionalized. The device and photochemical method are intended to be integrated into systems for detecting specific agents including chromate groundwater contamination, gasoline, and biological species.
机译:高灵敏度的传感器平台,用于使用微悬臂梁和其他微机电系统(MEMS)检测特定试剂,例如铬酸盐,汽油和生物物种,这些微机电系统的表面已通过光化学连接的有机单分子层(例如自组装单分子层(SAM))进行了修饰,或金-硫醇表面键。微悬臂梁传感器使用光化学氢化硅烷化修饰硅表面,金硫醇化学修饰金属表面,从而使多悬臂梁阵列芯片中的各个微悬臂梁可以分别进行修饰。具有各种分子识别位点的末端乙烯基取代的烃可通过光化学氢化硅烷化过程连接到硅的表面。通过将激活的紫外光顺序聚焦在选定的硅或氮化硅氢封端的表面上,并用有机硫醇,硫化物或二硫化物浸泡或斑点化选定的金属表面,使微悬臂梁功能化。该设备和光化学方法旨在集成到用于检测特定试剂的系统中,这些试剂包括铬酸盐地下水污染,汽油和生物物种。

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