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From ultrasoft pseudopotentials to the projector augmented-wave method

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TLDR
In this paper, the formal relationship between US Vanderbilt-type pseudopotentials and Blochl's projector augmented wave (PAW) method is derived and the Hamilton operator, the forces, and the stress tensor are derived for this modified PAW functional.
Abstract
The formal relationship between ultrasoft (US) Vanderbilt-type pseudopotentials and Bl\"ochl's projector augmented wave (PAW) method is derived. It is shown that the total energy functional for US pseudopotentials can be obtained by linearization of two terms in a slightly modified PAW total energy functional. The Hamilton operator, the forces, and the stress tensor are derived for this modified PAW functional. A simple way to implement the PAW method in existing plane-wave codes supporting US pseudopotentials is pointed out. In addition, critical tests are presented to compare the accuracy and efficiency of the PAW and the US pseudopotential method with relaxed core all electron methods. These tests include small molecules $({\mathrm{H}}_{2}{,\mathrm{}\mathrm{H}}_{2}{\mathrm{O},\mathrm{}\mathrm{Li}}_{2}{,\mathrm{}\mathrm{N}}_{2}{,\mathrm{}\mathrm{F}}_{2}{,\mathrm{}\mathrm{BF}}_{3}{,\mathrm{}\mathrm{SiF}}_{4})$ and several bulk systems (diamond, Si, V, Li, Ca, ${\mathrm{CaF}}_{2},$ Fe, Co, Ni). Particular attention is paid to the bulk properties and magnetic energies of Fe, Co, and Ni.

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Band-structure, optical properties, and defect physics of the photovoltaic semiconductor SnS

TL;DR: In this paper, the authors employ both theory and experiment to assess the PV relevant properties of SnS and clarify on whether SnS has an indirect or direct band gap and what is the minority carrier effective mass as a function of the film orientation.
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Visualizing Gas Molecules Interacting with Supported Nanoparticulate Catalysts at Reaction Conditions

TL;DR: An aberration-corrected, environmental transmission electron microscopy method was applied to show that adsorbed carbon monoxide molecules caused the 100 facets of a gold nanoparticle to reconstruct during CO oxidation at room temperature, and the energetic favorability of this reconstructed structure was confirmed.
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Crystal and Electronic Structures of Complex Bismuth Iodides A3Bi2I9 (A = K, Rb, Cs) Related to Perovskite: Aiding the Rational Design of Photovoltaics

TL;DR: In this paper, the crystal structures of the ternary iodides are redetermined and a corrected structural model for Rb3Bi2I9, as established by single crystal X-ray diffraction and solid state 87Rb NMR spectroscopy and supported by density functional theory (DFT) calculations is presented.
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Carbon dissolution and diffusion in ferrite and austenite from first principles

TL;DR: In this paper, the authors performed density-functional theory (DFT) calculations of carbon dissolution and diffusion in iron, the latter being a typical example of interstitial diffusion, and they found that a supercell with 128 Fe atoms and one C atom is sufficient for describing dilute concentrations of carbon in bcc Fe.
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Oxygen-Vacancy Abundant Ultrafine Co3O4/Graphene Composites for High-Rate Supercapacitor Electrodes.

TL;DR: A novel/universal one‐step laser irradiation method is developed that overcomes all challenges and obtains the oxygen‐vacancy abundant ultrafine Co3O4 nanoparticles/ graphene (UCNG) composites with high SCs performance and is demonstrated to be universal for other metal oxide/graphene Composites with tuned electrical conductivity and electrochemical activity.
References
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Book

Planewaves, Pseudopotentials, and the LAPW Method

TL;DR: The linearized augmented planewave (LAPW) method has emerged as the standard by which density functional calculations for transition metal and rare-earth containing materials are judged.
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