(Multi)functional Atomic Force Microscopy Imaging

Annual Review of Analytical Chemistry
Anisha N Patel, Christine Kranz

Abstract

Incorporating functionality to atomic force microscopy (AFM) to obtain physical and chemical information has always been a strong focus in AFM research. Modifying AFM probes with specific molecules permits accessibility of chemical information via specific reactions and interactions. Fundamental understanding of molecular processes at the solid/liquid interface with high spatial resolution is essential to many emerging research areas. Nanoscale electrochemical imaging has emerged as a complementary technique to advanced AFM techniques, providing information on electrochemical interfacial processes. While this review presents a brief introduction to advanced AFM imaging modes, such as multiparametric AFM and topography recognition imaging, the main focus herein is on electrochemical imaging via hybrid AFM-scanning electrochemical microscopy. Recent applications and the challenges associated with such nanoelectrochemical imaging strategies are presented.

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Citations

Mar 27, 2020·Research and Practice in Thrombosis and Haemostasis·Laura SachsRaghavendra Palankar
Dec 10, 2020·Chemical Society Reviews·Christine Kranz, Maria Wächtler
Dec 1, 2018·Analytical Chemistry·Cameron L BentleyPatrick R Unwin

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Methods Mentioned

BETA
AFM
atomic force microscopy
imaging techniques
force
imaging technique
chip
force measurements
biosensors
biosensor
electrochemical

Software Mentioned

SECM
COMSOL Multiphysics )
PicoTREC
AFM

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