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Research Article

Tailoring the Diameter of Single-Walled Carbon Nanotubes for Optical Applications

Ying Tian1Marina Y. Timmermans1Samuli Kivistö2Albert G. Nasibulin1( )Zhen Zhu1Hua Jiang1Oleg G. Okhotnikov2Esko I. Kauppinen1( )
NanoMaterials Group, Department of Applied Physics and Center for New Materials Aalto UniversityEspoo 00076 Finland
Optoelectronics Research Centre Tampere University of Technology, P. O. Box 692Tampere 33101 Finland
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Abstract

Single-walled carbon nanotubes (SWCNTs) with specific diameters are required for various applications particularly in electronics and photonics, since the diameter is an essential characteristic determining their electronic and optical properties. In this work, the selective growth of SWCNTs with a certain mean diameter is achieved by the addition of appropriate amounts of CO2 mixed with the carbon source (CO) into the aerosol (floating catalyst) chemical vapor deposition reactor. The noticeable shift of the peaks in the absorption spectra reveals that the mean diameters of the as-deposited SWCNTs are efficiently altered from 1.2 to 1.9 nm with increasing CO2 concentration. It is believed that CO2 acts as an etching agent and can selectively etch small diameter tubes due to their highly curved carbon surfaces. Polymer-free as-deposited SWCNT films with the desired diameters are used as saturable absorbers after stamping onto a highly reflecting Ag-mirror using a simple dry-transfer technique. Sub-picosecond mode-locked fiber laser operations at ~1.56 μm and ~2 μm are demonstrated, showing improvements in the performance after the optimization of the SWCNT properties.

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Nano Research
Pages 807-815

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Cite this article:
Tian Y, Timmermans MY, Kivistö S, et al. Tailoring the Diameter of Single-Walled Carbon Nanotubes for Optical Applications. Nano Research, 2011, 4(8): 807-815. https://doi.org/10.1007/s12274-011-0137-6

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Received: 16 December 2010
Revised: 20 March 2011
Accepted: 11 April 2011
Published: 07 May 2011
© Tsinghua University Press and Springer-Verlag Berlin Heidelberg 2011