Literature DB >> 16045330

Nanobelt self-assembly from an organic n-type semiconductor: propoxyethyl-PTCDI.

Kaushik Balakrishnan1, Aniket Datar, Randy Oitker, Hao Chen, Jianmin Zuo, Ling Zang.   

Abstract

Nanobelt structures have been fabricated for an n-type semiconductor molecule, N,N'-di(propoxyethyl)perylene-3,4,9,10-tetracarboxylic diimide (PTCDI). The short alkyloxy side chain not only affords effective pi-pi stacking in polar solvents for self-assembling but also provides sufficient solubility in nonpolar solvents for solution processing. As revealed by both AFM and electron microscopies, the nanobelts have an approximately rectangular cross section, with a typical thickness of about 100 nm and a width in the range of 300-500 nm. The length of the nanobelts ranges from 10 to a few tens of micrometers. The highly organized molecular packing (uniaxial crystalline phase) has been deduced from the measurement of electron diffraction and polarized microscopy imaging. The detected optical axis is consistent with the one-dimensional stacking of the molecules.

Entities:  

Year:  2005        PMID: 16045330     DOI: 10.1021/ja052940v

Source DB:  PubMed          Journal:  J Am Chem Soc        ISSN: 0002-7863            Impact factor:   15.419


  13 in total

1.  Solution-processed, high-performance n-channel organic microwire transistors.

Authors:  Joon Hak Oh; Hang Woo Lee; Stefan Mannsfeld; Randall M Stoltenberg; Eric Jung; Yong Wan Jin; Jong Min Kim; Ji-Beom Yoo; Zhenan Bao
Journal:  Proc Natl Acad Sci U S A       Date:  2009-03-19       Impact factor: 11.205

Review 2.  Programmed self-assembly of large π-conjugated molecules into electroactive one-dimensional nanostructures.

Authors:  Yohei Yamamoto
Journal:  Sci Technol Adv Mater       Date:  2012-06-13       Impact factor: 8.090

3.  Reversible Micro- and Nano- Phase Programming of Anthraquinone Thermochromism Using Blended Block Copolymers.

Authors:  Yumiao Zhang; Jonathan F Lovell
Journal:  Langmuir       Date:  2015-12-11       Impact factor: 3.882

4.  A nanomesh scaffold for supramolecular nanowire optoelectronic devices.

Authors:  Lei Zhang; Xiaolan Zhong; Egon Pavlica; Songlin Li; Alexander Klekachev; Gvido Bratina; Thomas W Ebbesen; Emanuele Orgiu; Paolo Samorì
Journal:  Nat Nanotechnol       Date:  2016-07-25       Impact factor: 39.213

5.  Organic nanofibers integrated by transfer technique in field-effect transistor devices.

Authors:  Luciana Tavares; Jakob Kjelstrup-Hansen; Kasper Thilsing-Hansen; Horst-Günter Rubahn
Journal:  Nanoscale Res Lett       Date:  2011-04-08       Impact factor: 4.703

Review 6.  Supramolecular Approaches to Nanoscale Morphological Control in Organic Solar Cells.

Authors:  Alexander M Haruk; Jeffrey M Mativetsky
Journal:  Int J Mol Sci       Date:  2015-06-11       Impact factor: 5.923

7.  Generation of Low-Dimensional Architectures through the Self-Assembly of Pyromellitic Diimide Derivatives.

Authors:  Chiara Musumeci; Monika Wałe Sa-Chorab; Adam Gorczyński; Grzegorz Markiewicz; Andrzej Bogucki; Roman Świetlik; Zbigniew Hnatejko; Wojciech Jankowski; Marcin Hoffmann; Emanuele Orgiu; Artur R Stefankiewicz; Violetta Patroniak; Artur Ciesielski; Paolo Samorì
Journal:  ACS Omega       Date:  2017-04-26

8.  Temperature-Responsive Luminescent Solar Concentrators: Tuning Energy Transfer in a Liquid Crystalline Matrix.

Authors:  Jeroen A H P Sol; Volker Dehm; Reinhard Hecht; Frank Würthner; Albertus P H J Schenning; Michael G Debije
Journal:  Angew Chem Int Ed Engl       Date:  2017-12-20       Impact factor: 15.336

9.  Control over size, shape, and photonics of self-assembled organic nanocrystals.

Authors:  Chen Shahar; Yaron Tidhar; Yunmin Jung; Haim Weissman; Sidney R Cohen; Ronit Bitton; Iddo Pinkas; Gilad Haran; Boris Rybtchinski
Journal:  Beilstein J Org Chem       Date:  2021-01-06       Impact factor: 2.883

10.  Positional isomers of cyanostilbene: two-component molecular assembly and multiple-stimuli responsive luminescence.

Authors:  Guoling Fan; Dongpeng Yan
Journal:  Sci Rep       Date:  2014-05-12       Impact factor: 4.379

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