Piezoelectric and Semiconducting Coupled Power Generating Process of a Single ZnO Belt/Wire. A Technology for Harvesting Electricity from the Environment
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https://figshare.com/articles/dataset/Piezoelectric_and_Semiconducting_Coupled_Power_Generating_Process_of_a_Single_ZnO_Belt_Wire_A_Technology_for_Harvesting_Electricity_from_the_Environment/3065905
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资源简介:
This paper presents the experimental observation of piezoelectric generation from a single ZnO wire/belt for illustrating a fundamental process
of converting mechanical energy into electricity at nanoscale. By deflecting a wire/belt using a conductive atomic force microscope tip in
contact mode, the energy is first created by the deflection force and stored by piezoelectric potential, and later converts into piezoelectric
energy. The mechanism of the generator is a result of coupled semiconducting and piezoelectric properties of ZnO. A piezoelectric effect is
required to create electric potential of ionic charges from elastic deformation; semiconducting property is necessary to separate and maintain
the charges and then release the potential via the rectifying behavior of the Schottky barrier at the metal−ZnO interface, which serves as a
switch in the entire process. The good conductivity of ZnO is rather unique because it makes the current flow possible. This paper demonstrates
a principle for harvesting energy from the environment. The technology has the potential of converting mechanical movement energy (such
as body movement, muscle stretching, blood pressure), vibration energy (such as acoustic/ultrasonic wave), and hydraulic energy (such as
flow of body fluid, blood flow, contraction of blood vessels) into electric energy that may be sufficient for self-powering nanodevices and
nanosystems in applications such as in situ, real-time, and implantable biosensing, biomedical monitoring, and biodetection.
创建时间:
2016-03-01



