Near‐Intrinsic Photo‐ and Electroluminescence from Single‐Walled Carbon Nanotube Thin Films on BCB‐Passivated Surfaces

Author:

Zorn Nicolas Frederic1ORCID,Settele Simon1,Zhao Shen2,Lindenthal Sebastian1,El Yumin Abdurrahman Ali1,Wedl Tim2,Li Han3,Flavel Benjamin Scott3,Högele Alexander2,Zaumseil Jana1ORCID

Affiliation:

1. Institute for Physical Chemistry Ruprecht‐Karls‐Universität Heidelberg D‐69120 Heidelberg Germany

2. Fakultät für Physik Munich Quantum Center and Center for NanoScience (CeNS) Ludwig‐Maximilians‐Universität München D‐80539 München Germany

3. Institute of Nanotechnology Karlsruhe Institute of Technology D‐76131 Karlsruhe Germany

Abstract

AbstractTheir outstanding electrical and optical properties make semiconducting single‐walled carbon nanotubes (SWCNTs) highly suitable for charge transport and emissive layers in near‐infrared optoelectronic devices. However, the luminescence spectra of SWCNT thin films on commonly used glass and Si/SiO2 substrates are often compromised by broadening of the main excitonic emission and unwanted low‐energy sidebands. Surface passivation with a commercially available, low dielectric constant, cross‐linked bis‐benzocyclobutene‐based polymer (BCB) enhances the emission properties of SWCNTs to the same level as hexagonal boron nitride (h‐BN) flakes do. The presence of BCB suppresses sideband emission, especially from the Y1 band, which is attributed to defects introduced by the interaction of the nanotube lattice with oxygen‐containing terminal groups of the substrate surface. The facile and reproducible deposition of homogeneous BCB films over large areas combined with their resistance against common solvents and chemicals employed during photolithography make them compatible with standard semiconductor device fabrication. Utilizing this approach, light‐emitting (6,5) SWCNT network field‐effect transistors are fabricated on BCB‐treated glass substrates with excellent electrical characteristics and near‐intrinsic electroluminescence. Hence, passivation with BCB is proposed as a standard treatment for substrates used for spectroscopic investigations of and optoelectronic devices with SWCNTs and other low‐dimensional emitters.

Funder

European Research Council

Deutsche Forschungsgemeinschaft

Publisher

Wiley

Subject

Atomic and Molecular Physics, and Optics,Electronic, Optical and Magnetic Materials

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