The Atomic Force Microscope (AFM) is a powerful tool for studying the properties and structures of materials at the nanometer scale. Unlike most surface analysis methods, it has no restrictions on surface types or their environment. This versatility allows AFM to investigate a wide range of materials, including conductive, insulating, soft, hard, cohesive, powdered, biological, organic, and inorganic. As such, it finds applications in diverse scientific fields such as chemistry, surface chemistry, polymer science, physics, molecular engineering, semiconductor science, biology, and medicine. Beyond its ability to image surfaces, AFM can also measure mechanical properties like Young's modulus. Young's modulus, also known as the modulus of elasticity (E), is defined as the ratio of stress to strain in the elastic region. This value reflects the stiffness of a material and changes with temperature. This paper explores the application of AFM in measuring Young's modulus across various scientific disciplines.
Daraee,M , Sadegh Hassani,S and Jalilzadeh Azar,S . (2024). An overview of determination of Young’s modulus by AFM in various fields. (e8537). Sustainable Energy & Chemical Engineering, 1(1), e8537 doi: 10.22075/jpetk.2024.27737.1011
MLA
Daraee,M , , Sadegh Hassani,S , and Jalilzadeh Azar,S . "An overview of determination of Young’s modulus by AFM in various fields" .e8537 , Sustainable Energy & Chemical Engineering, 1, 1, 2024, e8537. doi: 10.22075/jpetk.2024.27737.1011
HARVARD
Daraee M, Sadegh Hassani S, Jalilzadeh Azar S. (2024). 'An overview of determination of Young’s modulus by AFM in various fields', Sustainable Energy & Chemical Engineering, 1(1), e8537. doi: 10.22075/jpetk.2024.27737.1011
CHICAGO
M Daraee, S Sadegh Hassani and S Jalilzadeh Azar, "An overview of determination of Young’s modulus by AFM in various fields," Sustainable Energy & Chemical Engineering, 1 1 (2024): e8537, doi: 10.22075/jpetk.2024.27737.1011
VANCOUVER
Daraee M, Sadegh Hassani S, Jalilzadeh Azar S. An overview of determination of Young’s modulus by AFM in various fields. J. Sustain. Energy. Chem. Eng.. 2024;1(1):e8537. doi: 10.22075/jpetk.2024.27737.1011