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Basics of how to synthesize carbon nanotubes

Goki Eda*, Takeshi Fujita*, Hisato Yamaguchi, Damien Voiry, Mingwei Chen and Manish Chhowalla "Coherent Atomic and Electronic Heterostructures of Single-Layer MoS2" *Equal contribution ACS Nano 8, 7311–7317 (2012).

Emmanuel Stratakis, Goki Eda, Hisato Yamaguchi, Emmanuel Kymakis, Costas Fotakis and Manish Chhowalla "Free-standing graphene on microstructured silicon vertices for enhanced field emission properties" Nanoscale 4, 3069-3074 (2012).

In the field of one-dimensional nanostructures, CVD is the most extensively employed method.

Physical properties and applications of CNT

After an introduction to CNTs, the synthesis of bulk CNTs with high purity is explored.

Manish Chhowalla, Hyeon Suk Shin, Goki Eda, Lain-Jong Li, Kian Ping Loh, Hua, Zhang, Hua "The chemistry of two-dimensional layered transition metal dichalcogenide nanosheets" Nature Chemistry 5, 263-275 (2013).

George Bepete, Damien Voiry, Manish Chhowalla, Zivayi Chiguvare, Neil J. Coville "Incorporation of small BN domains in graphene during CVD using methane, boric acid and nitrogen gas" Nanoscale 5, 6552–6557 (2013).

Theoretical Calculations and Properties of Carbon Nanotubes

Cecilia Mattevi, Florian, Colleaux, HoKwon Kim, Yen-Hung Lin, Kyung T. Park, Manish Chhowalla, Thomas D. Anthopoulos"Solution-processable organic dielectrics for graphene electronics" Nanotechnology 23, 344017 (2012).

This phenomenon is abnormal and can not be explained with general accepted CNT growth mechanism.

Aniruddh Solanki, Sy-Tsong Dean Chueng, Perry T. Yin, Rajesh Kappera, Manish Chhowalla, Ki-Bum Lee "Axonal Alignment and Enhanced Neuronal Differentiation of Neural Stem Cells on Graphene-Nanoparticle Hybrid Structures" Adv. Mater. 25, 5477-5482 (2013).

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Synthesis of Coiled Carbon Nanotubes

One of the very first coiled carbon nanotubes can be seen in .

Recently significal improvement occurred on this field, a large-scale preparation technique for regularly coiled carbon microfibers of micrometer diameter was developed.

Each defect pair would twist the nanotube about an angle α (with 0°].

Damien Voiry, Maryam Salehi, Rafael Silva, Takeshi Fujita, Mingwei Chen, Tewodros Asefa, Vivek B. Shenoy, Goki Eda, and Manish Chhowalla "Conducting MoS2 Nanosheets as Catalysts for Hydrogen Evolution Reaction" Nano Lett., 13, 6222–6227 (2013).

All coiled carbon nanotubes produced by Wang .

Thuy-Duong Nguyen-Phan, Eun-Suok Oh, Manish Chhowalla, Tewodros Asefa, Eun Woo Shin "Hierarchical macrochanneled layered titanates with "house-of-cards"-type titanate nanosheets and their superior photocatalytic activity" J. Mater. Chem. A, 1, 7690-7701 (2013).

Growth Mechanisms of Coiled Carbon Nanotubes

Damien Voiry, Hisato Yamaguchi, Junwen Li, Rafael Silva, Diego C. B. Alves, Takeshi Fujita, Mingwei Chen, Tewodros Asefa, Vivek B. Shenoy, Goki Eda, Manish Chhowalla "Enhanced catalytic activity in strained chemically exfoliated WS2 nanosheets for hydrogen evolution" Nature Materials 12, 850-855 (2013).

Potencial Applications of Coiled Carbon Nanostructures

HoKwon Kim, Cecilia Mattevi, M. Reyes Calvo, Jenny C. Oberg, Luca Artiglia, Stefano Agnoli, Cyrus F. Hirjibehedin, Manish Chhowalla and Eduardo Saiz "Activation Energy Paths for Graphene Nucleation and Growth on Cu" ACS Nano 6, 3614–3623 (2012).

Investigations of nanobud formation.

Occurrence of coil-shaped fibers in the jungle of straight catalytically grown nanotubes has been noticed from the early days of studying their catalytic synthesis.

The texture of catalytically grown coil-shaped carbon nanotubules.

Goki Eda*, Hisato Yamaguchi*, Damien Voiry, Takeshi Fujita, Mingwei Chen, and Manish Chhowalla "Photoluminescence from Chemically Exfoliated MoS2" *Equal contribution Nano Letters 11, 5111–5116 (2011).

Growth-model for carbon nanotubes.

Interesting electrical and magnetic properties of helical and toroidal srtucture which are defenitely different than those observed in cylindrical carbon nanotubes were also predicted [].

Model structure of perfectly graphitizable coiled carbon nanotubes.

studied the shape formation process of carbon nanotubes and described a string equation for the possible existing shapes of the axis curve of multiwalled carbon nanotubes (MWNTs).

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