Area-Selective Growth of Zinc Oxide Nanowire Arrays for Piezoelectric Energy Harvesting

Author:

Anang Frank Eric Boye12ORCID,Wei Xuanwei1ORCID,Xu Jiushuai1,Cain Markys3ORCID,Li Zhi4,Brand Uwe4ORCID,Peiner Erwin1ORCID

Affiliation:

1. Institute of Semiconductor Technology, TU Braunschweig, 38104 Braunschweig, Germany

2. Scientific Metrology Department, Ghana Standards Authority, Accra P.O. Box MB 245, Ghana

3. Electrosciences Ltd., Farnham, Surrey GU9 9QT, UK

4. Surface Metrology Department, Physikalisch-Technische Bundesanstalt (PTB), 38116 Braunschweig, Germany

Abstract

In this work, we present the area-selective growth of zinc oxide nanowire (NW) arrays on patterned surfaces of a silicon (Si) substrate for a piezoelectric nanogenerator (PENG). ZnO NW arrays were selectively grown on patterned surfaces of a Si substrate using a devised microelectromechanical system (MEMS)-compatible chemical bath deposition (CBD) method. The fabricated devices measured a maximum peak output voltage of ~7.9 mV when a mass of 91.5 g was repeatedly manually placed on them. Finite element modeling (FEM) of a single NW using COMSOL Multiphysics at an applied axial force of 0.9 nN, which corresponded to the experimental condition, resulted in a voltage potential of −6.5 mV. The process repeated with the same pattern design using a layer of SU-8 polymer on the NWs yielded a much higher maximum peak output voltage of ~21.6 mV and a corresponding peak power density of 0.22 µW/cm3, independent of the size of the NW array. The mean values of the measured output voltage and FEM showed good agreement and a nearly linear dependence on the applied force on a 3 × 3 µm2 NW array area in the range of 20 to 90 nN.

Funder

EMPIR program

Publisher

MDPI AG

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