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Elastic Properties of 4–6 nm-thick Glassy Carbon Thin Films

机译:4–6 nm厚的玻璃碳薄膜的弹性特性

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摘要

Glassy carbon is a disordered, nanoporous form of carbon with superior thermal and chemical stability in extreme environments. Freestanding glassy carbon specimens with 4–6 nm thickness and 0.5 nm average pore size were synthesized and fabricated from polyfurfuryl alcohol precursors. Elastic properties of the specimens were measured in situ inside a scanning electron microscope using a custom-built micro-electro-mechanical system. The Young’s modulus, fracture stress and strain values were measured to be about 62 GPa, 870 MPa and 1.3%, respectively; showing strong size effects compared to a modulus value of 30 GPa at the bulk scale. This size effect is explained on the basis of the increased significance of surface elastic properties at the nanometer length-scale.
机译:玻碳是无序的纳米多孔碳,在极端环境下具有出色的热和化学稳定性。由聚糠醇前体合成并制备了厚度为4–6 nm,平均孔径为0.5 nm的独立式玻璃碳样品。使用定制的微机电系统在扫描电子显微镜内原位测量样品的弹性性能。测得的杨氏模量,断裂应力和应变值分别约为62 GPa,870 MPa和1.3%。与体积比例下30 GPa的模量值相比,显示出强大的尺寸效应。基于在纳米长度尺度上增加的表面弹性的重要性来解释这种尺寸效应。

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