Juan Víctor Perales Rondón

Formación académica

Departamento

Intereses

CO2 reduction, ammonia synthesis, operando spectroscopy, Raman in-situ, SERS, electrocatalysis, spectroelectrochemistry

Equipo

Dhanusha Rajanna (PhD student)
Miguel Ángel García (PhD student)

Miembros anteriores del equipo

Principales colaboraciones

Álvaro Colina (Univeristy of Burgos)
Aranzazu Heras (Univeristy of Burgos)
Enrique Herrero (Univeristy of Alicante)
Rosa Aran Ais (Univeristy of Alicante)
Wanli Gao (Curtin University)
Carlos Sánchez Sánchez (Pierre Marie et Curie University)
Alberto Escarpa (University of Alcalá)

Electrochemical reduction of molecular nitrogen to ammonia using plasmonic catalysts: Towards more sustainable ammonia production

A produção de amoníaco (NH₃) é essencial para o desenvolvimento humano, uma vez que constitui um precursor fundamental na fabricação de fertilizantes sintéticos, produtos químicos e no armazenamento de hidrogénio. Atualmente, o NH₃ é produzido através do processo Haber-Bosch (H-B). O desenvolvimento de alternativas sustentáveis ao processo H-B contribuirá de forma significativa para os objetivos […]

Data de início:

03/02/2026

Data de conclusão:

02/02/2028

InterGAmP – INTERDISCIPLINARY APPROACH TO DECENTRALIZED AND DECARBONIZED ELECTROCHEMICAL GREEN AMMONIA PRODUCTION

O projeto InterGAmP centra-se no desenvolvimento da síntese eletrocatalítica distribuída e descarbonizada de amoníaco, em comparação com a síntese centralizada e intensiva em carbono do processo Haber-Bosch, recorrendo a uma metodologia interdisciplinar. Serão desenvolvidas, à escala laboratorial, duas tecnologias distintas, nomeadamente a síntese eletrocatalítica de amoníaco (eNH₃) a baixa e a alta temperatura, em combinação […]

Data de início:

01/09/2024

Data de conclusão:

31/08/2027

Investigador(es) principal(ais):

Otras publicaciones

  1. Christa L. Brosseau, Alvaro Colina, Juan V. Perales-Rondon, Andrew J. Wilson, Padmanabh B. Joshi, Bin Ren, Xiang Wang, Electrochemical surface-enhanced Raman spectroscopy, Nature Reviews Methods Primers, 2023, 3, 79. DOI: 10.1038/s43586-023-00263-6. Position of author: 3/7
  2. Juan Victor Perales-Rondon*, Sheila Hernandez, Ana C. Gonzalez-Baro, Aranzazu Heras, and Alvaro Colina*, Simultaneous Scanning Electrochemical Microscopy and UV–Vis Absorption Spectroelectrochemistry, Analytical Chemistry, 2023, 28, 10532–10539. DOI: 10.1021/acs.analchem.2c05468. Position of author: 1/5 (CA)
  3. Sheila Hernandez, Martin Perez-Estebanez, William Cheuquepan, Juan V. Perales-Rondon, Aranzazu Heras*, and Alvaro Colina*, Raman, UV–Vis Absorption, and Fluorescence Spectroelectrochemistry for Studying the Enhancement of the Raman Scattering Using Nanocrystals Activated by Metal Cations, Analytical Chemistry, 2023, 95, 44, 16070–16078. DOI: 10.1021/acs.analchem.3c01172. Position of author: 4/6
  4. Juan V. Perales-Rondon, Daniel Rojas, Wanli Gao, Martin Pumera*, Copper 3D-printed electrodes for ammonia electrosynthesis via nitrate reduction, ACS Sustainable Chemistry & Engineering, 2023, 18, 6923–6931. DOI: 10.1021/acssuschemeng.2c06851. Position of author: 1/4
  5. Juan V. Perales-Rondon*, Alvaro Colina, María Cristina González, Alberto Escarpa*, Roughened silver microtubes for reproducible and quantitative SERS using a template-assisted electrosynthesis approach, Applied Materials Today, 2020, 20, 100710. DOI: 10.1016/j.apmt.2020.100710 Position of author: 1/4 (CA)
  6. Sheila Hernandez, Juan V. Perales-Rondon*, Aranzazu Heras, Alvaro Colina*, Electrochemical SERS and SOERS in a single experiment: A new methodology for quantitative analysis, Electrochimica Acta, 2020, 334, 135561. DOI: 10.1016/j.electacta.2019.135561 Position of author: 2/4 (CA)
  7. Juan V. Perales-Rondon, Sheila Hernandez, Daniel Martin-Yerga, Pablo Fanjul-Bolado, Aránzazu Heras, Alvaro Colina*, Electrochemical Surface oxidation enhanced Raman scattering, Electrochimica Acta, 2018, 282, 377-383. DOI: 10.1016/j.electacta.2018.06.079 Position of author: 1/6
  8. Adolfo Ferre-Vilaplana, Juan V. Perales-Rondón, Carlos Busó-Rogero, Juan M Feliu, Enrique Herrero*, Formic acid oxidation on platinum electrodes: a detailed mechanism supported by experiments and calculations on well-defined surfaces, Journal of Materials Chemistry A, 2017, 5, 21773-21784. DOI: 10.1039/C7TA07116G Position of author: 2/5
  9. Juan V. Perales-Rondón*, Jose Solla-Gullón, Enrique Herrero, Carlos M. Sánchez-Sánchez, Enhanced catalytic activity and stability for the electrooxidation of formic acid on lead modified shape controlled platinum nanoparticles, Applied Catalysis B-Environmental, 2017, 201, 48-57. DOI: 10.1016/j.apcatb.2016.08.011 Position of author: 1/4 (CA)
  10. Juan V. Perales-Rondón, Adolfo Ferre-Vilaplana, Juan M. Feliu, Enrique Herrero*, Oxidation Mechanism of Formic Acid on the Bismuth Adatom-Modified Pt(111) Surface, Journal of The American Chemical Society, 2014, 136, 13110-13113. DOI: 10.1021/ja505943h Position of author: 1/4