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Photo induced force microscopy: chemical spectroscopy beyond the diffraction limit

机译:诱导力显微镜照片:化学光谱学超越衍射极限

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摘要

Over the last decade remarkable advances have been made in creating spectroscopic tools to interrogate surface properties using electromagnetic radiation in the near field, achieving lateral resolutions in the nanometre range. We review recent work involving one of the most promising of these spectroscopic tools, photo induced force microscopy (PiFM), which uses mechanical detection of dipole–dipole interactions enabling nanometre resolved mapping of surface properties ranging from vibrational modes of adsorbates to plasmon resonances. We discuss the origin of contrast in PiFM images, its applications as a local probe of chemical species and for mapping local electric fields in areas as diverse as zeolite films and biometric recognition. In comparison with related techniques such as photothermal atomic force microscopy-based infrared (AFM-IR) and tip enhanced Raman spectroscopy (TERS) PiFM has many advantages but perhaps its most successful application is in combination with other surface characterisation methods which provide information averaged over much greater surface areas. We discuss the most recent developments of PiFM technology which are leading to higher resolution images and are widening the range of environments in which the technique can be applied, and we consider how the field is likely to progress in the future.
机译:在过去的十年里进展显著在创建光谱工具询问表面性质使用在近场电磁辐射,实现在纳米横向分辨率的范围内。最有前途的光谱工具,诱导力显微镜照片(PiFM),它使用机械检测取向相互作用使纳米解决映射从振动的表面属性被吸附物的等离子体共振模式。PiFM讨论起源的对比图片,它的应用程序作为一个本地探针的化学物种和映射当地电场沸石电影和生物等领域识别。技术,如光热光谱分析原子力microscopy-based红外(AFM-IR)和小费增强拉曼光谱(参数)PiFM有很多但也许最成功的优势应用程序是结合其他表面描述方法提供平均信息在更大的表面区域。PiFM导致更高的技术分辨率图像的范围扩大环境的技术应用,我们考虑领域是如何可能的未来的进步。

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