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Capacitive performance enhancements of RuO2 nanocrystals through manipulation of preferential orientation growth originated from the synergy of Pluronic F127 trapping and annealing
Journal article   Peer reviewed

Capacitive performance enhancements of RuO2 nanocrystals through manipulation of preferential orientation growth originated from the synergy of Pluronic F127 trapping and annealing

I.-Li Chen, Tsan-Yao Chen, Yu-Chen Wei, Chi-Chang Hu and Tsang-Lang Lin
Nanoscale, Vol.6(5), pp.2861-2871
07/03/2014

Abstract

The capacitive performances of RuO 2 prepared by oxidation precipitation of Ru precursors (RuCl 3 ·xH 2 O) surrounded with tri-block co-polymer, Pluronic F127, in aqueous media can be enhanced through manipulating its preferential orientation growth of nanocrystals. From the heterogeneous surface chemistry viewpoints with the support of structure characterizations, such enhancement originates from the preferential orientation growth of the {101} facet due to the adsorption of the highly polarisable, non-ionic ligands of Pluronic F127 on the high surface energy facets on RuO 2 nanocrystallites. In this case, the F127-trapped sample with annealing at 300 °C enhances the specific capacitance 1.6-fold in comparison to its counterpart without F127. With the mechanistic insight into the heterogeneous surface crystal growth pathways, our results materialize the development of RuO 2 with tuneable capacitive performances. Furthermore, due to the different propagation models of RuO 2 with and without F127 trapping, a schematic diagram is proposed to interpret such a unique crystal growth evolution phenomenon. © 2014 The Royal Society of Chemistry.

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