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原子力显微镜红外光谱和化学成像的技术与应用

贺静 郑娜 徐丽 沈素丹 浦群 房尔园 介素云

化工进展2025,Vol.44Issue(4):2156-2171,16.
化工进展2025,Vol.44Issue(4):2156-2171,16.DOI:10.16085/j.issn.1000-6613.2024-0624

原子力显微镜红外光谱和化学成像的技术与应用

Techniques and applications of atomic force microscope infrared spectroscopy and chemical imaging

贺静 1郑娜 1徐丽 1沈素丹 1浦群 1房尔园 1介素云1

作者信息

  • 1. 浙江大学化学工程与生物工程学院,浙江大学化学工程联合国家重点实验室,浙江 杭州 310058
  • 折叠

摘要

Abstract

In this review,the core mechanism,technical progress and wide application in many disciplines of atomic force microscope infrared spectroscopy(AFM-IR)were discussed.AFM-IR technology combined the nanoscale spatial resolution of atomic force microscope(AFM)with the chemical analysis capability of infrared spectroscopy(IR).Based on the principle of photothermal induced resonance(PTIR),AFM-IR technology not only continued the advantages of AFM in the characterization of micro-morphology,but also overcame the limitation of traditional infrared spectroscopy in spatial resolution.And AFM-IR technology complemented the blank of AFM in chemical component analysis.The principle of AFM-IR and three imaging techniques(contact,tapping and peakforce tapping)were described,and its application in polymer composites,biological tissues,environmental contaminant detection,and the characterization of piezoelectric ferroelectric materials and battery materials were discussed.At the same time,the challenges of AFM-IR technology in improving signal to noise ratio(SNR)and its application in soft matter research were also presented.Finally,the direction of future research was proposed in order to promote the further development of AFM-IR technology,and then play a more critical role in the design and performance optimization of materials.

关键词

原子力显微镜红外光谱/纳米结构/聚合物/电池材料/生物工程/环境科学

Key words

atomic force microscope infrared spectroscopy(AFM-IR)/nanostructure/polymer/battery material/bioengineering/environmental science

分类

化学工程

引用本文复制引用

贺静,郑娜,徐丽,沈素丹,浦群,房尔园,介素云..原子力显微镜红外光谱和化学成像的技术与应用[J].化工进展,2025,44(4):2156-2171,16.

基金项目

浙江大学实验技术重点研究项目(SZD202303). (SZD202303)

化工进展

OA北大核心

1000-6613

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