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Vaporization-condensation-recrystallization process-mediated synthesis of helical m-aminobenzoic acid nanobelts SCIE SCOPUS

Title
Vaporization-condensation-recrystallization process-mediated synthesis of helical m-aminobenzoic acid nanobelts
Authors
Yoon, SMHwang, ICShin, NAhn, DLee, SJLee, JYChoi, HC
Date Issued
2007-11-06
Publisher
AMER CHEMICAL SOC
Abstract
One-dimensional (I D) helical organic nanostructures were synthesized by a modified vapor-solid (VS) process, called the vaporization -condensation-recrystallization (VCR) process. The conventional solution-phase synthetic methods generally mediate self-assemblies of repeating unit molecules. To provide enough intermolecular interaction forces among the unit molecules, such strategy requires specific designs and syntheses of complex unit molecules as they possess numerous functional groups including phenyl rings, hydroxyl groups, long aliphatic chains, etc. On the contrary, we found that small and simple organic molecules, for example, m-ABA, could be self-assembled by the VCR process, resulting in ID helical organic nanostructures. When m-aminobenzoic acid (m-ABA) powders were vaporized and transported to be condensed on a cooler region, the condensates were recrystallized into 1D helical nanobeits. Each step of the VCR process was confirmed from control experiments performed by varying reaction times, substrate types, and reaction temperatures. Powder XRD data, SAED analysis, and theoretical calculations revealed that dimers of m-ABA molecules have repeating units, and the growth axis of m-ABA nanohelices is [100].
Keywords
COMPLEMENTARY HYDROGEN-BONDS; OXIDE NANOBELTS; NANOSTRUCTURES; NANOWIRES; SOLIDIFICATION; NANOHELICES; NANORIBBONS; FIBERS; GROWTH
URI
https://oasis.postech.ac.kr/handle/2014.oak/23095
DOI
10.1021/LA702071W
ISSN
0743-7463
Article Type
Article
Citation
LANGMUIR, vol. 23, no. 23, page. 11875 - 11882, 2007-11-06
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