Journal articleActa Materialia · April 15, 2026
Spinodal decomposition, a key mechanism of microstructure formation in materials, has long posed challenges for predictive modeling, due to the need for parameter-free approaches that accurately capture local energy landscapes. In this work, we propose an ...
Full textCite
Journal articleNpj Computational Materials · December 1, 2025
Tailoring material properties often requires understanding the solidification process. Herein, we introduce the geometric descriptor Soliquidy, which numerically captures the Euclidean transport cost between the translationally disordered versus ordered st ...
Full textCite
Journal articleHigh Entropy Alloys and Materials · March 1, 2025
AFLOW4 is the latest iteration of the AFLOW toolkit, specifically tailored to study high-entropy disordered materials. This upgrade includes innovative features like the Soliquidy module, based on the Euclidean transport cost between disordered and ordered ...
Full textCite
Journal articleActa Materialia · March 1, 2024
Spinodal decomposition can improve a number of essential properties in materials, especially hardness. Yet, the theoretical prediction of the onset of this phenomenon (e.g., temperature) and its microstructure (e.g., wavelength) often requires input parame ...
Full textCite
Journal articleMembranes · January 2024
Patterned membrane surfaces offer a hydrodynamic approach to mitigating concentration polarization and subsequent surface fouling. However, when subjected to steady crossflow conditions, surface patterns promote particle accumulation in the recirculation z ...
Full textCite
Journal articleGates open research · January 2019
Background: There is an unmet demand for community-scale fecal sludge treatment units (FSTUs) that serve communities of between 1,000 and 50,000 people and are able to operate in non-sewered and off-grid environments. An emerging industry standard f ...
Full textCite
Journal articleInternational Journal of Hydrogen Energy · July 27, 2016
The present study demonstrates the possibility of generating hydrogen by methanol steam reforming at temperatures of 235–260 °C inside a non-concentrating solar collector, ideally for stationary fuel cell systems. In contrast to the current state-of-the-ar ...
Full textCite
Journal articleSolar Energy · January 1, 2014
Tremendous research efforts have been conducted studying the capturing and conversion of solar energy. Solar thermal power systems offer a compelling opportunity for renewable energy utilization with high efficiencies and excellent cost-effectiveness. The ...
Full textCite
Journal articleJournal of Catalysis · April 1, 2013
Au/α-Fe2O3 catalyst was synthesized using a modified co-precipitation method to generate an inverse catalyst model. The effects of introducing CO2 and H2O during preferential oxidation (PROX) of CO were investiga ...
Full textCite
Journal articleJournal of Solar Energy Engineering Transactions of the ASME · October 8, 2012
The present study investigates the feasibility, efficiency, and system design of a hybrid solar system generating electric power for stationary applications such as residential buildings. The system is fed by methanol and combines methanol steam reforming ...
Full textCite
Journal articleJournal of Micromechanics and Microengineering · May 1, 2012
3D solid and pocketed micro-wires and micro-walls are needed for emerging applications that require fine-scale functional structures in three dimensions, including micro-heaters, micro-reactors and solar cells. To fulfill this demand, 3D micro-structures w ...
Full textCite
Journal articleLangmuir : the ACS journal of surfaces and colloids · March 2012
In this article, we introduce fully digital selective ZnO nanowire array growth on inkjet-printed seed patterning. Through proper natural convection suppression during hydrothermal growth, successful ZnO nanowire local growth can be achieved. Without any n ...
Full textCite
Journal articlePloS one · January 2012
Flexible electronics opened a new class of future electronics. The foldable, light and durable nature of flexible electronics allows vast flexibility in applications such as display, energy devices and mobile electronics. Even though conventional electroni ...
Full textCite
Journal articleInternational Journal of Hydrogen Energy · September 1, 2011
This paper presents numerical and experimental investigations of syngas production from butane. A surface reaction mechanism is used to model the reaction pathways. The butane reforming simulations and experiments are conducted in two reformers (tubular an ...
Full textCite
Journal articleJournal of Micromechanics and Microengineering · December 1, 2010
Inkjet printing of functional materials is a key technology toward ultra-low-cost, large-area electronics. We demonstrate low-temperature 3D micro metal structure fabrication by direct inkjet printing of metal nanoparticles (NPs) as a versatile, direct 3D ...
Full textCite
Journal articleJournal of Power Sources · June 15, 2010
This paper presents and investigates a concept for a flexible direct methanol micro-fuel cell (FDMMFC) based on the microstructuring of a Cr/Au metalized, thin polymer film of photosensitive SU-8. The inscribed microchannels in the electrodes are 200 μm × ...
Full textCite
Journal articleJournal of Power Sources · March 15, 2010
The present study proposes a combination of solar-powered components (two heaters, an evaporator, and a steam reformer) with a proton exchange membrane fuel cell to form a powerplant that converts methanol to electricity. The solar radiation heats up the m ...
Full textCite
Journal articleInternational Journal of Hydrogen Energy · January 1, 2010
In the present study a small steam-methanol reformer with a colloid nanocatalyst is utilized to produce hydrogen. Radiation from a focused continuous green light laser (514 nm wavelength) is used to provide the energy for steam-methanol reforming. Nanocata ...
Full textCite
Journal articleJournal of Fuel Cell Science and Technology · November 1, 2009
This work investigates numerically a catalytic postcombustor for a micro-solid oxide fuel cell (SOFC) system. The postcombustor oxidizes toxic and explosive carbon monoxide (CO) and hydrogen exiting a solid oxide fuel cell to carbon dioxide and water. A si ...
Full textCite
Journal articleInternational Journal of Multiphase Flow · August 1, 2009
This paper presents flow map investigations of adiabatic two-phase flow in square cross-sectioned, 200 μm deep microchannels fabricated in silicon, employing laser induced fluorescence microscopy. The influence of surface tension and nozzle geometry on the ...
Full textCite
Journal articleApplied Physics Letters · July 31, 2009
The vertical growth of conductive gold nanowires in ambient atmosphere through on-demand dielectrophoretically guided deposition of nanoparticle-laden colloids is demonstrated. Accelerated by dielectrophoresis, rapidly evaporating colloidal droplets leave ...
Full textCite
Journal articleAiche Journal · July 1, 2009
In this study, a novel flow-based method is presented to place catalytic nanoparticles into a reactor by sol-gelation of a porous ceramic consisting of Rh/ceria/zirconia nanoparticles, silica sand, ceramic binder, and a gelation agent. This method allows f ...
Full textCite
Journal articleChemical Engineering Science · November 1, 2008
A novel disk-shaped packed bed micro-reactor containing Rh/ceria/zirconia nanoparticles is investigated with respect to catalytic butane-to-syngas processing at moderate temperatures of 550 °C. The main goal of this study is the development of an efficient ...
Full textCite
Journal articleJournal of Power Sources · February 15, 2008
The concept and the design of a micro-solid oxide fuel cell system is described and discussed. The system in this study is called the ONEBAT system and consists of the fuel cell PEN (positive electrode - electrolyte - negative electrode) element, a gas pro ...
Full textCite
Journal articleJournal of Power Sources · July 14, 2006
In this paper, an analytical model of a micro solid oxide fuel cell (SOFC) system fed by butane is introduced and analyzed in order to optimize its exergetic efficiency. The micro SOFC system is equipped with a partial oxidation (POX) reformer, a vaporizer ...
Full textCite
Journal articleInternational Journal of Heat and Mass Transfer · July 1, 2006
In the present study, a hydrogen polymer electrolyte fuel cell (PEFC) micropowerplant in combination with a steam reformer fed by methanol and a direct methanol fuel cell (DMFC) micropowerplant are analyzed numerically regarding their exergetic efficiency. ...
Full textCite
Journal articleChemical Engineering Science · June 1, 2006
In this paper, the effect of the catalyst surface site density (catalyst amount) and reactor geometry on the reforming process of methane in a wall-coated, single-channel microreactor is investigated numerically. Such a reactor, consisting of a tubular flo ...
Full textCite