Modified silicone rubber for fabrication and contacting of flexible suspended membranes of n-/p-GaP nanowires with a single-walled carbon nanotube transparent contact

Author:

Neplokh Vladimir123ORCID,Kochetkov Fedor M.123,Deriabin Konstantin V.453ORCID,Fedorov Vladimir V.123,Bolshakov Alexey D.123,Eliseev Igor E.123ORCID,Mikhailovskii Vladimir Yu.453,Ilatovskii Daniil A.673,Krasnikov Dmitry V.673,Tchernycheva Maria89101112ORCID,Cirlin George E.123ORCID,Nasibulin Albert G.6731314,Mukhin Ivan S.123152,Islamova Regina M.453ORCID

Affiliation:

1. Saint Petersburg Academic University

2. Saint Petersburg

3. Russia

4. Saint Petersburg State University

5. 199034 Saint Petersburg

6. Skolkovo Institute of Science and Technology

7. Moscow

8. Centre of Nanosciences and Nanotechnologies

9. UMR 9001 CNRS, Univ. Paris Sud

10. Univ. Paris-Saclay

11. 91120 Palaiseau Cedex

12. France

13. Aalto University School of Chemical Engineering

14. Espoo

15. ITMO University

Abstract

Rubber materials are the key components of flexible optoelectronic devices, especially for the light-emitting diodes based on arrays of inorganic nanowires (NWs).

Funder

Russian Foundation for Basic Research

Russian Science Foundation

European Research Council

Publisher

Royal Society of Chemistry (RSC)

Subject

Materials Chemistry,General Chemistry

Reference50 articles.

1. B. Huh , OLED Display Market Tracker, accessed 10 October 2019, https://cdn.ihs.com/www/pdf/1118/abstract-oled-display-market-tracker.pdf

2. R. Mertens , IHS: OLED displays take up over 60% of the total smartphone display market in Q3 2018, by revenue, accessed 10 October 2019, https://www.oled-info.com/ihs-oled-displays-take-over-60-total-smartphone-display-market-q3-2018-revenue

3. Recent Advances in OLED Optical Design

4. J. Kleff , M.Töpper , L.Dietrich , H.Oppermann and S.Herrmann , 2013 IEEE 63rd Electronic Components and Technology Conference , IEEE , 2013 , pp. 1219–1224

5. Printed Assemblies of Inorganic Light-Emitting Diodes for Deformable and Semitransparent Displays

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