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Dive into the research topics where A. Moreno-Zuria is active.

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Featured researches published by A. Moreno-Zuria.


Journal of Physics: Conference Series | 2013

Formic acid microfluidic fuel cell based on well-defined Pd nanocubes

A. Moreno-Zuria; A. Dector; N. Arjona; M. Guerra-Balcázar; J. Ledesma-García; J. P. Esquivel; N. Sabaté; L G Arrriaga; A.U. Chávez-Ramírez

Microfluidic fuel cells (μFFC) are emerging as a promising solution for small-scale power demands. The T-shaped architecture of the μFFC promotes a laminar flow regimen between the catholyte and anolyte streams excluding the use of a membrane, this property allows a simplest design and the use of several micromachining techniques based on a lab-on-chip technologies. This work presents a combination of new materials and low cost fabrication processes to develop a light, small, flexible and environmental friendly device able to supply the energy demand of some portable devices. Well-defined and homogeneous Pd nanocubes which exhibited the (100) preferential crystallographic plane were supported on Vulcan carbon and used as anodic electrocatalyst in a novel and compact design of a SU-8 μFFC feeded with formic acid as fuel. The SU-8 photoresist properties and the organic microelectronic technology were important factors to reduce the dimensions of the μFFC structure. The results obtained from polarization and power density curves exhibited the highest power density (8.3 mW cm−2) reported in literature for direct formic acid μFFCs.


Biosensors and Bioelectronics | 2017

Evaluation of single and stack membraneless enzymatic fuel cells based on ethanol in simulated body fluids

J. Galindo-de-la-Rosa; N. Arjona; A. Moreno-Zuria; E. Ortiz-Ortega; M. Guerra-Balcázar; J. Ledesma-García; L.G. Arriaga

The purpose of this work is to evaluate single and double-cell membraneless microfluidic fuel cells (MMFCs) that operate in the presence of simulated body fluids SBF, human serum and blood enriched with ethanol as fuels. The study was performed using the alcohol dehydrogenase enzyme immobilised by covalent binding through an array composed of carbon Toray paper as support and a layer of poly(methylene blue)/tetrabutylammonium bromide/Nafion and glutaraldehyde (3D bioanode electrode). The single MMFC was tested in a hybrid microfluidic fuel cell using Pt/C as the cathode. A cell voltage of 1.035V and power density of 3.154mWcm-2 were observed, which is the highest performance reported to date. The stability and durability were tested through chronoamperometry and polarisation/performance curves obtained at different days, which demonstrated a slow decrease in the power density on day 10 (14%) and day 20 (26%). Additionally, the cell was tested for ethanol oxidation in simulated body fluid (SBF) with ionic composition similar to human blood plasma. Those tests resulted in 0.93V of cell voltage and a power density close to 1.237mWcm-2. The double cell MMFC (Stack) was tested using serum and human blood enriched with ethanol. The stack operated with blood in a serial connection showed an excellent cell performance (0.716mWcm-2), demonstrating the feasibility of employing human blood as energy source.


Journal of Power Sources | 2014

Direct formic acid microfluidic fuel cell design and performance evolution

A. Moreno-Zuria; A. Dector; F.M. Cuevas-Muñiz; J. P. Esquivel; N. Sabaté; J. Ledesma-García; L. G. Arriaga; A.U. Chávez-Ramírez


Chemical Communications | 2014

AuPd/polyaniline as the anode in an ethylene glycol microfluidic fuel cell operated at room temperature

N. Arjona; A. Palacios; A. Moreno-Zuria; M. Guerra-Balcázar; J. Ledesma-García; L. G. Arriaga


Fuel | 2016

An improved ethanol microfluidic fuel cell based on a PdAg/MWCNT catalyst synthesized by the reverse micelles method

A.J. Armenta-González; R. Carrera-Cerritos; A. Moreno-Zuria; L. Álvarez-Contreras; J. Ledesma-García; F.M. Cuevas-Muñiz; L.G. Arriaga


International Journal of Hydrogen Energy | 2016

Glucose microfluidic fuel cell using air as oxidant

Ricardo Antonio Escalona-Villalpando; A. Dector; D. Dector; A. Moreno-Zuria; S.M. Durón-Torres; M. Galván-Valencia; L.G. Arriaga; J. Ledesma-García


Journal of Power Sources | 2017

Design, fabrication and performance of a mixed-reactant membraneless micro direct methanol fuel cell stack

J.C. Abrego-Martínez; A. Moreno-Zuria; F.M. Cuevas-Muñiz; L.G. Arriaga; Shuhui Sun; Mohamed Mohamedi


International Journal of Hydrogen Energy | 2017

Fabrication and evaluation of passive alkaline membraneless microfluidic DMFC

J.C. Abrego-Martínez; A. Moreno-Zuria; Youling Wang; F.M. Cuevas-Muñiz; L.G. Arriaga; Shuhui Sun; Mohamed Mohamedi


Journal of Power Sources | 2017

Waste-to-energy conversion from a microfluidic device

B. López-González; R.J. Jiménez-Valdés; A. Moreno-Zuria; F.M. Cuevas-Muñiz; J. Ledesma-García; J.L. García-Cordero; L.G. Arriaga


International Journal of Hydrogen Energy | 2017

Evolution of microfluidic fuel stack design as an innovative alternative to energy production

A. Moreno-Zuria; E. Ortiz-Ortega; M.P. Gurrola; A.U. Chávez-Ramírez; J. Ledesma-García; L.G. Arriaga

Collaboration


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J. Ledesma-García

Autonomous University of Queretaro

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L.G. Arriaga

Centro de Investigación y Desarrollo Tecnológico en Electroquímica

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F.M. Cuevas-Muñiz

Centro de Investigación y Desarrollo Tecnológico en Electroquímica

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M. Guerra-Balcázar

Autonomous University of Queretaro

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N. Arjona

Centro de Investigación y Desarrollo Tecnológico en Electroquímica

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A.U. Chávez-Ramírez

Centro de Investigación y Desarrollo Tecnológico en Electroquímica

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E. Ortiz-Ortega

Autonomous University of Queretaro

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A. Dector

Centro de Investigación y Desarrollo Tecnológico en Electroquímica

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J. Galindo-de-la-Rosa

Centro de Investigación y Desarrollo Tecnológico en Electroquímica

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L. G. Arriaga

Centro de Investigación y Desarrollo Tecnológico en Electroquímica

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