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Related papers: Significantly Enhanced Vacancy Diffusion in Mn-con…

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We present a proof-of-principle demonstration of a universal law for the element Mn, which greatly enhances vacancy diffusion through an anomalous Friedel Oscillation effect in a series of Ni-based concentrated solid-solution alloys,…

Materials Science · Physics 2023-03-28 Huaqing Guan , Shaosong Huang , Fuyang Tian , Chenyang Lu , Qiu Xu , Jijun Zhao

Vacancy is known to play a critical role in solid state diffusion and determine many properties of the materials. We report a proof-of-principle result on Mn in the role of tuning vacancy diffusion by an anomalous Friedel Oscillations…

Materials Science · Physics 2021-11-02 Shaosong Huanga , Huaqing Guan , Fuyang Tian , Chenyang Lu , Qiu Xu , Jijun Zhao

Multi-principal element alloys (MPEAs) are exciting systems showing remarkable properties compared to conventional materials due to their exceedingly large compositional space and spatially varying chemical environment. However, predicting…

Materials Science · Physics 2022-09-12 Mauricio Ponga , Mohamed Hendy , Okan K. Orhan , Swarnava Ghosh

Defects intentionally introduced into magnetic materials often have a profound effect on the physical properties. Specifically tailored neutron spectroscopic experiments can provide detailed information on both the local exchange…

Materials Science · Physics 2014-06-04 A. Furrer , A. Podlesnyak , K. W. Kraemer , J. P. Embs , V. Pomjakushin , Th. Straessle

Many of the purported virtues of Multi-Principal Element Alloys (MPEAs), such as corrosion, high-temperature oxidation and irradiation resistance, are highly sensitive to vacancy diffusivity. Similarly, solute interdiffusion is governed by…

Materials Science · Physics 2020-03-18 Spencer L. Thomas , Srikanth Patala

This thesis is a theoretical study of thermodynamic, point-defect formation and diffusion properties in Fe-Ni alloys with a focus on the magnetochemical effects. The results are derived from density functional theory (DFT) calculations and…

Materials Science · Physics 2023-02-02 Kangming Li

Random vacancies in a graphene monolayer induce defect states that are known to form a narrow impurity band centered around zero energy at half-filling. We use a space-resolved formulation of the quantum metric and establish a strong…

Mesoscale and Nanoscale Physics · Physics 2024-08-01 Quentin Marsal , Annica M. Black-Schaffer

It is well known that the irradiation-induced defects strongly influence the mechanical properties of zirconium (Zr) or its alloys in nuclear reactors. However, how the point defect changes the mechanical properties has been rarely studied.…

Materials Science · Physics 2016-06-14 Xueyan Zhu , Xingyu Gao , Haifeng Song , Guomin Han , De-Ye Lin

The influence of vacancies and interstitial atoms on magnetism in Pu has been considered in frames of the Density Functional Theory (DFT). The relaxation of crystal structure arising due to different types of defects was calculated using…

Strongly Correlated Electrons · Physics 2018-11-01 A. O. Shorikov , M. A. Korotin , V. I. Anisimov , V. V. Dremov , Ph. A. Sapozhnikov

Recording field ion microscope images under field evaporating conditions and subsequently reconstructing the underlying atomic configuration, called three-dimensional field ion microscopy (3D-FIM) is one of the few techniques capable of…

Materials Science · Physics 2023-02-01 Shyam Katnagallu , Christoph Freysoldt , Baptiste Gault , Jörg Neugebauer

Multi-principal element alloys (MPEAs) continue to garner interest as structural and plasma-facing materials due to their structure stability and increased resistance to radiation damage. Despite sensitivity of mechanical behavior to…

Materials Science · Physics 2022-04-29 Ankit Roy , Prashant Singh , Ganesh Balasubramanian , Duane D. Johnson

MAX phases have attracted increased attention due to their unique combination of ceramic and metallic properties. Point-defects are known to play a vital role in the structural, electronic and transport properties of alloys in general and…

Materials Science · Physics 2021-05-11 Prashant Singh , Daniel Sauceda , Raymundo Arroyave

Defects, i.e. inhomogeneities of the underlying lattice, are ubiquitous in magnetic materials and can have a crucial impact on their applicability in spintronic devices. For magnetic skyrmions, localized and topologically non-trivial spin…

Materials Science · Physics 2023-04-26 Philipp Rieger , Markus Weißenhofer , Ulrich Nowak

Atomically engineered oxide heterostructures provide a fertile ground for creating novel states. For example, a two-dimensional electron gas at the interface between two oxide insulators, giant thermoelectric Seebeck coefficient, emergent…

Mn is used as a dopant to improve the electromechanical properties of perovskite oxides. We elucidate the role of Mn defects and associated vacancies on the electronic, atomic and ferroelectric properties of BaTiO$_3$. Using density…

Materials Science · Physics 2014-12-24 J. F. Nossa , Ivan I. Naumov , R. E. Cohen

The development of super-hard materials has recently focused on systems containing a heavy transition metal and light main group elements. Niobium carbides and nitrides have previously been identified as potential candidates, however, the…

Materials Science · Physics 2020-09-23 P. W. Muchiri , K. K. Korir , N. W. Makau , G. O. Amolo

With quantum Monte Carlo methods, we investigate the consequences of placing a magnetic adatom adjacent to a vacancy in a graphene sheet. We find that instead of the adatom properties depending on the energy of the adatom orbital, as in a…

Strongly Correlated Electrons · Physics 2012-03-29 F. M. Hu , J. E. Gubernatis , Hai-Qing Lin , Yan-Chao Li , R. M. Nieminen

The presence of defects such as vacancies in solids has prominent effects on their mechanical properties. It not only modifies the stiffness and strength of materials, but also changes their morphologies. The latter effect is extremely…

Mesoscale and Nanoscale Physics · Physics 2015-08-13 Zhigong Song , Zhiping Xu

Elucidating the interplay of defect and stress at the microscopic level is a fundamental physical problem that has strong connection with materials science. Here, based on the two-dimensional crystal model, we show that the instability mode…

Soft Condensed Matter · Physics 2020-06-19 Zhenwei Yao

We report the first study of the dynamics of point defects, mono and di-vacancies, in a confined 2-D colloidal crystal in real space and time using digital video microscopy. The defects are introduced by manipulating individual particles…

Soft Condensed Matter · Physics 2009-11-07 Alexandros Pertsinidis , X. S. Ling
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