Publications

You can also find my articles on Google Scholar or ORCID.

Publications: 18
Citations: 347
h-index: 10

Most Relevant papers

[1] Pablo A. Prieto‑Díaz, Ange A. Maurice, and Marcos Vera Measuring density and viscosity of vanadium electrolytes: A database with multivariate polynomial fits, Journal of Energy Storage, 10.1016/j.est.2024.112429.

[2] Maurice, Ange A., Alberto E. Quintero, and Marcos Vera. A comprehensive guide for measuring total vanadium concentration and state of charge of vanadium electrolytes using UV‑Visible spectroscopy., Electrochimica Acta, 2024, 202410.1016/j.est.2024.

[3] Charpentier, Nicolas M., Ange A. Maurice, Dong Xia, Wen‑Jie Li, Chang‑Sian Chua, Andrea Brambilla, and Jean‑Christophe P. Gabriel. Urban mining of unexploited spent critical metals from E‑waste made possible using advanced sorting.Resources, Conservation and Recycling, 10.1016/j.resconrec.2023.107033.

[4] Fabien Olivier and Ange A. Maurice and Daniel Meyer and Jean‑Christophe P. Gabriel, Liquid–liquid extraction: thermodynamics– kinetics driven processes explored by microfluidics, Comptes Rendus de Chimie, 2022, 10.5802/crchim.

[5] Ange Maurice, Khang Ngoc Dinh, Nicolas Charpentier, Andrea Brambilla, Jean‑Christophe P. Gabriel, Dismantling of Printed Circuit Boards Enabling Electronic Component Sorting and treatment: A Strategy for Maximizing Elemental Recovery using Hydrometallurgy, Sustainability, 2021, 10.3390/su131810357

[6] Ange A. Maurice, Johannes Theisen, Varun Rai, Fabien Olivier, Asmae El Maangar, Jean Duhamet, Thomas Zemb, Jean‑Christophe P. Gabriel, First online X‑ray fluorescence characterization of liquid‑liquid extraction in microfluidics, Nano‑Select, 2021, 10.1002/nano.202100133.

[7] Ange Maurice, Johannes Theisen, Jean‑Christophe P. Gabriel, Microfluidic lab‑on‑chip advances for liquid–liquid extraction process studies, Current Opinion in Colloid & Interface Science, 10.1016/j.cocis.2020.03.

[8] Ange Maurice, Laurence Bodelot, Beng Kang Tay, and Bérengère Lebental, Controlled, low‑temperature nanogap propagation in graphene using femtosecond laser patterning, SMALL, 10.1002/smll.201801348.

[9] Boris Vaisband, Ange Maurice, Chong Wei Tan, Beng Kang Tay, and Eby G Friedman, Electrical and thermal models of CNT TSV and graphite interface ,IEEE Transactions on Electron Devices, 65(5):1880–1886, 2018, 10.1109/TED.2018.2812761.

[10] Songyan Hou, Muhammad Danang Birowosuto, Saleem Umar, Ange Maurice, Roland Yingjie Tay, Philippe Coquet, Beng Kang Tay, Hong Wang, and Edwin Hang Tong Teo, Localized emission from laser‑irradiated defects in 2D hexagonalboron nitride, 2D Materials, 5(1):015010, 2017, 10.1088/2053-1583/aa8e61

Conferences

[11] Ange A. Maurice, Alberto E. Quintero, and Marcos Vera, Calibrating UV/Visible spectra for accurately measuring concentration and State Of Charge in Vanadium Redox Flow Batteries: A comprehensive how‑to guide, ISE Meeting, Lyon, France, 2024

[12] Ange A. Maurice, Alberto Bernaldo de Quirós, Sonia Sevilla, Vanesa Muñoz Perales, Pablo Angel Prieto‑Diaz, Alberto Emanuel Emanuel Quintero Gamez, and Marcos Vera, Monitoring the State of Charge Imbalance of Vanadium Redox Flow Batteries Via Dual Online UV/Visible Spectroscopy, ECS Meeting, Boston, USA, 2024

[13] Ange A. Maurice, Johannes Theisen, Varun Rai, Fabien Olivier, Asmae El Maangar, Jean Duhamet, Thomas Zemb, Jean‑Christophe P. Gabriel, On‑Line Microfluidics XRF and FTIR Spectroscopy for Fast Exploration of Liquid/Liquid Extraction Thermodynamics, In Virtual MRS Spring Meeting, Poster Presentation, Materials Research Society, 2021.

[14] Loïc Loisel, Ange A. Maurice, Bérengère Lebental, Stefano Vezzoli, Costel‑Sorin Cojocaru, and Beng Kang Tay, A graphene‑based non‑ volatile memory , Carbon Nanotubes, Graphene, and Emerging 2D Materials for Electronic and Photonic Devices VIII, Oral Presentation, volume 9552, page 95520R. International Society for Optics and Photonics, 2015, DOI:10.1117/12.