We describe the most recent energy density functional derived within the quark-meson coupling model. Although fit to the binding energies and charge radii of just seventy magic nuclei, the accuracy with which it reproduces nuclear properties across the entire periodic table is outstanding. As well ...
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Computational studies on the crystal structure, thermodynamic properties, detonation performance, and pyrolysis mechanism of 2,4,6,8-tetranitro-1,3,5,7-tet... Studies have suggested that octanitrocubane (ONC) is one of the most powerful non-nuclear high energy density material (HEDM) currently ...
Largely improved catalytic performances of activity, durability, and kinetics are demonstrated compared to the conventional alloy system and commercial Pt/C catalyst, due to the efficient synergism of Pt and CoSe2; the peak current density of Pt/CoSe2 for methanol (ethanol) oxidation is 87.61 (...
Iron fluoride, an intercalation-conversion cathode for lithium ion batteries, promises a high theoretical energy density of 1922 Wh kg–1. However, poor electrochemical reversibility due to repeated breaking/reformation of metal fluoride bonds pose
Materials Engineering for High Density Energy Storage provides first-hand knowledge about the design of safe and powerful batteries and the methods and approaches for enhancing the performance of next-generation batteries. The book explores how th
In general, the spatial planning rules stipulate where RES technologies can or cannot be placed in the city, suburb, or landscape. Pertinent at the local and regional levels is the scale and density of installations; orientation and configuration; siting to the closest settlement (minimum distances...
powerful HEDMs with a crystal density of 2.03 and 2.02 g cm−3, respectively but also suffering from similar problems of complicated synthesis10,20. Although, the synthesis of these well-known HEDMs are significant breakthroughs in the field of energetic materials, the majority of them ...
Flexible fibrous supercapacitors (FFS) are taking account of as the energy storage devices for wearable electronics owing to their high power density, high safety, long cycle life, and simple manufacturing process. Nevertheless, FFSs have the disadvantage of low specific capacitance that results from ...
(CIBs) have emerged as a candidate for the next generation of novel electrochemical energy storage technologies, which show the potential in matching or even surpassing the current lithium metal batteries in terms of energy density, dendrite-free safety, and elimination of the dependence on the ...