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Eigenstress model for electrochemistry of solid surfaces
Woodruff, editors. Published by Elsevier Boreyko and C. Patrick Collier. ACS Nano , 7 2 , Icephobic materials: Fundamentals, performance evaluation, and applications. Progress in Materials Science , , Icing behavior of water droplets impinging on cold superhydrophobic surface. Surface and Coatings Technology , , Xinghua Wu, Vadim V. When superhydrophobic coatings are icephobic: Role of surface topology. Meyer, Annegret Benke, Ute Bergmann. Icing temperature measurements of water on pyroelectric single crystals: Impact of experimental methods on the degree of supercooling.
Cold Regions Science and Technology , , Improvement of anti-icing properties of low surface energy coatings by introducing phase-change microcapsules. Coatings , 8 6 , Chihiro Urata. Toward Enviromentally Adaptive Anti-icing Coating. Thomas F. Ice Nucleation in Mixed-Phase Clouds. Zhisen Zhang, Xiang-Yang Liu. Control of ice nucleation: freezing and antifreeze strategies. Chemical Society Reviews , 47 18 , Crystallisation of organic molecules with a remarkably suppressed coffee-ring effect by a drop-drying process using binary solvent core—shell droplets.
Design and preparation of sandwich-like polydimethylsiloxane PDMS sponges with super-low ice adhesion. Soft Matter , 14 23 , Atmospheric Measurement Techniques , 11 9 , Small , 13 48 , A lattice Boltzmann model for condensation and freezing of dry saturated vapor about a cryogenic spot on an inclined hydrophobic surface. International Journal of Heat and Mass Transfer , , Experimental investigation of the successive freezing processes of water droplets on an ice surface. England, A. Ion-specific ice propagation behavior on polyelectrolyte brush surfaces. RSC Advances , 7 2 , Coalescence of droplets on micro-structure patterned hydrophobic planar solid surfaces.
RSC Advances , 7 39 , Saurabh Nath, S. Farzad Ahmadi, Jonathan B. A Review of Condensation Frosting. Salih Ozbay, H. Ice accretion by spraying supercooled droplets is not dependent on wettability and surface free energy of substrates.
Complete list of papers
Tuning Ice Nucleation with Supercharged Polypeptides. Advanced Materials , 28 25 , Microscopic observation of frost behaviors at the early stage of frost formation on hydrophobic surfaces.
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International Journal of Heat and Mass Transfer , 97 , Tuning ice nucleation with counterions on polyelectrolyte brush surfaces. Science Advances , 2 6 , e Boreyko, Ryan R. Hansen, Kevin R. Murphy, Saurabh Nath, Scott T. Retterer, C. Controlling condensation and frost growth with chemical micropatterns.
Scientific Reports , 6 1 DOI: Wetting hysteresis induced by temperature changes: Supercooled water on hydrophobic surfaces. Journal of Colloid and Interface Science , , Entropy , 18 4 , Coatings , 6 1 , 3. Liquid crystal compound anti-ice surface.
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Liquid Crystals , 43 2 , Michael J. Design of anti-icing surfaces: smooth, textured or slippery?. Atanu K.
The electric field controlled ferromagnetic resonance field possesses a loop-like curve, with a large resonance field shift between positive and negative remanent polarizations, which confirms a non-volatile strong magnetoelectric coupling. Enhanced electromagnon excitations in Nd-doped BiFeO 3 nanoparticles near morphotropic phase boundaries.
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In multiferroics, electromagnons have been recognized as a noticeable topic due to their indispensable role in magnetoelectric, magnetodielectric, and magnetocapacitance effects. We found that the electromagnons in Bi1-xNdxFeO3 nanoparticles are associated with their phase transition. The total coupling weight of electromagnons is gradually increased in polar R3c structures and then reduces in the antipolar Pbam phase, and the weight in the antipolar phase is less than that of the pure R3c phase Zn-Doped Cu facet with efficient catalytic ability for the CO 2 electroreduction to ethylene.
Electrochemically converting CO2 into fuels and chemicals is an appealing strategy to create energy rich products. The highly demanded product ethylene has been preferably produced on Cu-based catalysts with abundant exposed Cu facets. However, the performance is still limited by the large energy barrier for the C-C dimerization. Here, to lower the energy barrier, we tailor the electronic structure of Cu by doping a series of transition metals using the density functional theory DFT method.
The zinc-doped Cu surface has shown a superior catalytic performance Contrasting the hydration thermodynamics of methane and methanol. Experimental hydration thermodynamic functions of methane and methanol over a large temperature range and at 1 atm coming from previous studies of others are analysed by means of a theoretical approach grounded in statistical mechanics. It is shown that the hydration Gibbs energy change can be reproduced quite well for both solutes by adding the large positive reversible work of cavity creation to the solute-water van der Waals and H-bond energetic attractions.
The large negative hydration entropy change of both methane and methanol comes from the decrease in translational entropy of water molecules due to the solvent-excluded volume effect caused by cavity creation in water Photon management properties of Yb-doped SnO 2 nanoparticles synthesized by the sol-gel technique.
SnO2 is a transparent large band gap semiconductor, particularly interesting for optoelectronic and photovoltaic devices, mainly because its conduction can be easily tuned by doping or by modulating the amount of oxygen vacancies. Besides, rare earth doping was successfully exploited for up conversion properties. As starting solutions we used stable non-alkoxide metal-organic compounds, which is rather uncommon Water binding to Fe III hemes studied in a cooled ion trap: characterization of a strong 'weak' ligand.
Time-resolved observation of transient precursor state of CO on Ru using carbon K-edge spectroscopy. The transient dynamics of carbon monoxide CO molecules on a Ru surface following femtosecond optical laser pump excitation has been studied by monitoring changes in the unoccupied electronic structure using an ultrafast X-ray free-electron laser FEL probe.
The particular symmetry of perpendicularly chemisorbed CO on the surface is exploited to investigate how the molecular orientation changes with time by varying the polarization of the FEL pulses.
Related Chemistry and Physics of Solid Surfaces V
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