A Metallo‐ Silsesquioxane Synthesized from Cu (II) via a Cyanide Fe (III) Bridge: Synthesis and Application as an Electrochemical Sensor

Author:

da Silva Carvalho Victor Aparecido1,Peixoto Murilo Santos1,dos Santos Felipe Alexsandro1,Sales Abner Santos Baroni12,Masteralo Valmor Roberto2,Dias Filho Newton Luiz1,do Carmo Devaney Ribeiro1

Affiliation:

1. School of Engineering Department of Physics and Chemistry São Paulo State University (Unesp) Campus of Ilha Solteira 15385-000 Ilha Solteira SP Brazil

2. Sao Carlos Institute of Physics University of Sao Paulo 565-905 São Carlos, SP Brazil

Abstract

AbstractA new metallohybrid silsesquioxane (S) was synthesized herein from copper and ferricyanide via a cyanide bridge to produce a new electroactive hybrid material (SCuH), which was then characterized by spectroscopic and microscopic techniques and cyclic voltammetry. The voltammetric behavior of SCuH employing a graphite paste electrode indicates a well‐defined redox couple with formal potential Eθ′=0.76±0.01 V. The electrode exhibited high sensitivity to nitrite and was successfully tested for nitrite detection. The linearity of the analytical curve was 2.0×10−4 mol L−1 − 1.0×10−3 mol L−1, with a limit of detection of 2.65×10−5 mol L−1, and sensitivity amperometric value of 57.63 mA/mol L−1. These findings suggest that this material displays exceptional potential for application in electrochemical sensors designed for nitrite detection.

Publisher

Wiley

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