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A Soft Material Approach Towards Grand Energy Challenges
Abstract: Nanostructured materials have become critically important in many areas of technology, ranging from renewable energy, electronics, photonics, to biology and medicine,....
Topological and Interaction Effects in Atomically Thin 1D & 2D Materials
Abstract: Symmetry, interaction and topological effects, as well as environmental screening, dominate many of the quantum properties of reduced-dimensional systems and nanos...
“Quantum-Sized” Metal Nanoparticles for Photochemical Energy Conversion
Abstract: Generation of hot carriers in transition metal catalysts through photoexcitation has been demonstrated to be a promising approach capable of significantly lowering....
Catalysis over Metal Oxides: Shape and Composition Effects
Abstract: Recent advances in nanomaterials synthesis make it possible to achieve nanocrystals with crystallographically defined surface facets, composition and high surface a...
Magnonic Topological States and Spinwave Devices
Abstract: Topological matters have attracted lots of attention in recent years because of their interesting and exotic properties. One such property is the existence of unidirecti...
Solar H2 Fuel Production by Polymer Catalysts: fundamental understanding...
Abstract: Solar energy conversion and storage into a high density energy medium e.g H2 via water splitting has been attracting substantial interest over the last decade, which c...
Modelling the influence of nonelectrostatic properties of electrolytes o...
Abstract: We present a theoretical model that describes how nonelectrostatic (van der Waals) interactions of electrolyte ions influence adsorption of the ions at electrode surfa...
Light-Matter Quantum Control via Terahertz Coherence and Dynamics
Abstract: Harnessing quantum coherence and prethermalization has emerged as a cross-cutting theme for discovering and controlling emergent, even thermodynamically forbidde...
Spin direction controlled electronic band structure in two dimensional f...
Abstract: Manipulating physical properties using the spin degree of freedom constitutes a major part of modern condensed matter physics and is very important for spintronics....
Oxide nano-sheets as template for epitaxial growth of VO2: Epitaxy anywh...
Abstract: Vanadium dioxide (VO2) has been drawing attention since its metal-insulator transition (MIT) with several orders of magnitude resistivity change at 341 K was discove...
Electronic Excitations in Materials: From Photovoltaics to Plasmonics
Abstract: Understanding excited state phenomena is at the heart of many important materials problems, such as photovoltaics, photocatalysis, plasmonics and solid-state lighti...
Itinerant Antiferromagnetism in RuO2
Abstract: Bulk rutile RuO2 has long been considered a Pauli paramagnet. Here we report that RuO2 exhibits a hitherto undetected lattice distortion below approximately 900 K [1]....
Nanomechanics of Atomic Friction
Abstract: For well-defined contacts with sizes less than hundreds of nanometers, the friction force-displacement curves are characterized by the stick-slip behavior, which are...
Design and understand materials from first principles
Abstract: Density functional theory based first principles calculation provides a powerful tool to design and understand solid state materials from atomistic scale. In this se...
Machine Learning and Multi-scale Modeling
Abstract: Multi-scale modeling is an ambitious program that aims at unifying the different physical models at different scales for the practical purpose of developing accurate m...
Landscape and flux theory for nonequilibrium physical and biological sys...
Abstract:We present a review of the recently developed landscape and flux theory for non-equilibrium dynamical systems. We point out that the global natures of the associated dynam...
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