Simple Colorimetric Method for Quantification of Surface Carboxy Groups on Polymer Particles
Andreas Hennig, Angelika Hoffmann, Heike Borcherding, Thomas Thiele, Uwe Schedler, Ute Resch‐Genger
Federal Institute For Materials Research and Testing
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We present a novel, simple, and fast colorimetric method to quantify the total number of carboxy groups on polymer microparticle and nanoparticle surfaces. This method exploits that small divalent transition metal cations (M(2+) = Ni(2+), Co(2+), Cd(2+)) are efficiently bound to these surface functional groups, which allows their extraction by a single centrifugation step. Remaining M(2+) in the supernatant is subsequently quantified spectrophotometrically after addition of the metal ion indicator pyrocatechol violet, for which Ni(2+) was identified to be the most suitable transition metal cation. We demonstrate that the difference between added and detected M(2+) is nicely correlated to the number of surface carboxy groups as determined by conductometry, thereby affording a validated measure for the trueness of this procedure. The variation coefficient of ~5% found in reproducibility studies underlines the potential of this novel method that can find conceivable applications for the characterization of different types of poly(carboxylic acid)-functionalized materials, e.g., for quality control by manufacturers of such materials.
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化学Advanced Polymer Synthesis and Characterization
Analytical Chemistry and Chromatography · Polydiacetylene-based materials and applications
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