材料科学
铁电性
鸟嘌呤
电介质
极化(电化学)
薄膜
胞嘧啶
纳米技术
压电响应力显微镜
碱基
生物分子
正交晶系
结晶学
光电子学
晶体结构
DNA
化学
物理化学
基因
核苷酸
生物化学
作者
Marcela Socol,Lucian Trupină,Aurelian Catalin Galca,Cristina Chirilă,George E. Stan,Aurel Vlaicu,Anda Elena Stanciu,Andra Georgia Boni,Mihaela Botea,Anca Stănculescu,L. Pintilie,Bogdana Borca
出处
期刊:Nanotechnology
[IOP Publishing]
日期:2021-07-02
卷期号:32 (41): 415702-415702
被引量:4
标识
DOI:10.1088/1361-6528/ac10e4
摘要
The discovery of multifunctional properties related to electro-activity of organic systems of biomolecules is important for a variety of applications, especially for devices in the realm of biocompatible sensors and/or bioactuators. A further step towards such applications is to prepare thin films with the required properties. Here, the investigation is focused on the characterization of films of guanine and cytosine nucleobases, prepared by thermal evaporation-an industrial accessible deposition technique. The cytosine films have an orthorhombic non-centrosymmetric structure and grow in two interconnected nanostructured fractal patterns, of nearly equal proportion. Piezoresponse force microscopy images acquired at room temperature on the cytosine films display large zones with antiparallel alignment of the vertical components of the polarization vector. Guanine films have a dense nano-grained morphology. Our studies reveal electrical polarization switching effects which can be related to ferroelectricity in the films of guanine molecules. Characteristic ferroelectric polarization-electric-field hysteresis loops showing large electrical polarization are observed at low temperatures up to 200 K. Above this temperature, the guanine films have a preponderant paraelectric phase containing residual or locally induced nano-scopic ferroelectric domains, as observed by piezoresponse force microscopy at room temperature.
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