Selective Polycarboxylation of Semiconducting Single-Walled Carbon Nanotubes by Reductive Sidewall Functionalization
Citations Over TimeTop 10% of 2011 papers
Abstract
The efficient and controllable synthesis, the detailed characterization, and the chemical postfunctionalization of polycarboxylated single-walled carbon nanotubes SWCNT(COOH)(n) are reported. This innovative covalent sidewall functionalization method is characterized by (a) the preservation of the integrity of the entire σ-framework of SWCNTs; (b) the possibility of achieving very high degrees of addition; (c) control of the functionalization degrees by the variation of the reaction conditions (reaction time, ultrasonic treatment, pressure); (d) the identification of conditions for the selective functionalization of semiconducting carbon nanotubes, leaving unfunctionalized metallic tubes behind; (e) the proof that the introduced carboxylic acid functionalities can serve as versatile anchor points for the coupling to functional molecules; and (f) the application of a subsequent thermal degradation step of the functionalized semiconducting tubes leaving behind intact metallic SWCNTs. Functional derivatives have been characterized in detail by means of Raman, UV-vis/nIR, IR, and fluorescence spectroscopy as well as by thermogravimetric analysis combined with mass spectrometry, atomic force microscopy, and zeta-potential measurements.
Related Papers
- → Maskless functionalization of a carbon nanotube dot array biosensor using an ultrafine atmospheric pressure plasma jet(2015)47 cited
- → Surface functionalization of microporous carbon fibers by vapor phase methods for CO2 capture(2023)3 cited
- → Selective external surface functionalization of large-pore silica materials capable of protein loading(2016)24 cited
- → Thermal Functionalization of GaN Surfaces with 1-Alkenes(2013)13 cited
- Susquehanna Chorale Spring Concert "Roots and Wings"(2017)