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      Piezo‐Phototronic Effect on Selective Electron or Hole Transport through Depletion Region of Vis–NIR Broadband Photodiode

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          Abstract

          Silicon underpins nearly all microelectronics today and will continue to do so for some decades to come. However, for silicon photonics, the indirect band gap of silicon and lack of adjustability severely limit its use in applications such as broadband photodiodes. Here, a high‐performance p‐Si/n‐ZnO broadband photodiode working in a wide wavelength range from visible to near‐infrared light with high sensitivity, fast response, and good stability is reported. The absorption of near‐infrared wavelength light is significantly enhanced due to the nanostructured/textured top surface. The general performance of the broadband photodiodes can be further improved by the piezo‐phototronic effect. The enhancement of responsivity can reach a maximum of 78% to 442 nm illumination, the linearity and saturation limit to 1060 nm light are also significantly increased by applying external strains. The photodiode is illuminated with different wavelength lights to selectively choose the photogenerated charge carriers (either electrons or holes) passing through the depletion region, to investigate the piezo‐phototronic effect on electron or hole transport separately for the first time. This is essential for studying the basic principles in order to develop a full understanding about piezotronics and it also enables the development of the better performance of optoelectronics.

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          Fundamentals of zinc oxide as a semiconductor

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            Fundamentals of Photonics

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              • Record: found
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              • Article: not found

              Micro-cable structured textile for simultaneously harvesting solar and mechanical energy

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                Author and article information

                Journal
                Advanced Materials
                Advanced Materials
                Wiley
                0935-9648
                1521-4095
                August 2017
                June 06 2017
                August 2017
                : 29
                : 29
                Affiliations
                [1 ] School of Materials Science and Engineering Georgia Institute of Technology Atlanta GA 30332‐0245 USA
                [2 ] School of Electronic Science and Technology Institute for sensing Technologies Dalian University of Technology Dalian Liaoning 116024 China
                [3 ] School of Industrial Engineering Purdue University West Lafayette IN 47907‐2023 USA
                [4 ] Beijing Institute of Nanoenergy and Nanosystems Chinese Academy of Sciences Beijing 100083 China
                Article
                10.1002/adma.201701412
                0fab0ece-c1c2-4ca9-94e1-78837ce744fd
                © 2017

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