Related Experiment Video
Updated: Jan 21, 2026

Synthesis and Characterization of Fe-doped Aluminosilicate Nanotubes with Enhanced Electron Conductive Properties
Published on: November 15, 2016
Electrochemical Synthesis of La-Doped BaTiO₃ Nanopowders
Géssica de Oliveira Santiago Santos1, Franciele de Oliveira Freitas Bergamaski1, Lucas Gonçalves Magalhães1
1Laboratório de Eletroquímica e Nanotecnologia, Instituto de Tecnologia e Pesquisa, Av. Murilo Dantas, 300, CEP 49032490, Aracaju, SE, Brazil.
Abstract:
Electrochemical synthesis has been presented as a powerful technique to produce nanoparticles. However, it has been especially focused on noble metal particles, while few studies have been done on oxides production. On the other hand, when partially doped with trivalent cations at the barium sublattice, BaTiO₃-based ceramics are well known to exhibit semiconductive character, accompanied by a positive temperature coefficient of resistivity (PTCR). Here, we synthesized pure and La-doped BaTiO₃ nanoparticles electrochemically using a metallic titanium electrode as a Ti source. The powder synthesis was made in an electrochemical cell coupled to a thermostatic bath under mild conditions (ambient temperature and pressure) with an electrical potential up to 50 V and current of 3.2 A. In these conditions, the synthesized powders present nanometric size, confirmed by transmission electron microscopy images. The pseudo-cubic BaTiO₃ phase is confirmed by X-ray diffraction and Raman spectroscopy techniques. To check the quality, the powders were sintered at 1250 °C and the ceramics achieved a relative density of 95%. The BaTiO₃:La sintered ceramics present a PTCR jump of up to three orders of magnitude on resistivity with minimum value at room temperature of 105 Ω·cm.
Related Concept Videos
What is an Electrochemical Gradient?
The chemical gradient relies on differences in the abundance of a substance on the outside versus the inside of a cell and flows from areas of high to low ion concentration. In contrast, the electrical gradient revolves around an...
Dehydration Synthesis
Dehydration synthesis (also called a condensation reaction) is the chemical process in which two molecules covalently link together to form a new molecule, along with the release of a water molecule. Many physiologically important compounds form by dehydration synthesis reactions, such as complex carbohydrates, proteins, DNA, and RNA.
Synthesis of carbohydrates
Sugar molecules are covalently linked together by dehydration synthesis. During the reaction, the hydroxyl (-OH) group from...
Synthesis and Decomposition Reactions
Interfacial Electrochemical Methods: Overview
Lagging Strand Synthesis
There are several major differences between synthesis of the leading strand and synthesis of the lagging strand. 1) Leading strand synthesis happens in the direction of replication fork opening, whereas lagging strand synthesis happens in the...
Transfer RNA Synthesis
Each of these chemical modifications is carried by a specific enzyme, post-transcription. All of these enzymes have unique base and site-specificity. Methylation, the most common chemical modification, is carried by at least nine different enzymes, with...

