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Related papers: Backbone NxH Compounds at High Pressures

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Sodium chloride (NaCl), a ubiquitous and chemically stable compound, has been considered inert under ambient conditions. Its typical B1 structure is highly isotropic without preferential direction, favoring the growth of a three-dimensional…

Materials Science · Physics 2025-01-24 Ping Ning , Yifan Tian , Guangtao Liu , Hongbo Wang , Qingyang Hu , Hanyu Liu , Mi Zhou , Yanming Ma

Despite their electronic dominance, cubic diamond structured Si and Ge, are optoelectronically deficient. Recent work indicates, however, that a volume-expanded hexagonal Ge modification can exhibit intensely sought, superior optoelectronic…

We map the high-pressure phase diagram of nitrogen hydrate up to 16 GPa at room temperature by combining neutron diffraction, Raman spectroscopy, and crystal structure prediction. We reveal a rich sequence of structural transformations,…

Non-metal nitrides are an exciting field of chemistry, featuring a significant number of compounds that can possess outstanding material properties. This characteristic relies on maximizing the number of strong covalent bonds, with…

An assessment of the Sn unary system is presented. First, the literature on phase equilibria, the thermodynamic properties, the volume and related properties, and shock compression of tin is thoroughly reviewed. Second, the Sn system is…

Materials Science · Physics 2022-06-24 Guillaume Deffrennes , Philippe Faure , François Bottin , Jean-Marc Joubert , Benoit Oudot

Niobium polyhydride was synthesized at high pressure and high temperature conditions by using diamond anvil cell combined with in situ high pressure laser heating techniques. High pressure electric transport experiments demonstrate that…

Various tin hydrides SnHx (x = 4, 8, 12, 14) have been theoretically predicted to be stable at high pressures and to show high-critical-temperature superconductivity with Tc ranging from about 70 to 100 K. However, experimental…

Superconductivity · Physics 2022-03-17 F. Hong , P. F. Shan , L. X. Yang , B. B. Yue , P. T. Yang , Z. Y. Liu , J. P. Sun , J. H. Dai , H. Yu , Y. Y. Yin , X. H. Yu , J. G. Cheng , Z. X. Zhao

We describe an experimental platform that generates infrared images of micrometer-sized samples in the high pressure region of a diamond anvil cell. Using a 2.3 micron laser as a source of radiation, the system will be particularly useful…

Superconductivity · Physics 2021-11-24 Tarun Patel , A. Drozdov , V. S. Minkov , M. I. Eremets , E. J. Nicol , J. P. Carbotte , T. Timusk , A. W. Tsen

A new experimental setup combining X-Ray Photon Correlation Spectroscopy (XPCS) in the hard x-ray regime and a high-pressure sample environment is developed to monitor the pressure dependence of the internal motion of complex systems down…

We present a combined theoretical and experimental study of the high-pressure behavior of thallium. X-ray diffraction experiments have been carried out at room temperature up to 125 GPa using diamond-anvil cells, nearly doubling the…

Materials Science · Physics 2016-10-04 C. Cazorla , S. G. MacLeod , D. Errandonea , K. A. Munro , M. I. McMahon , C. Popescu

High-pressure polyhydrides are leading contenders for room temperature superconductivity. The next frontier lies in stabilizing them at ambient pressure, which would allow their practical applications. In this first-principles computational…

Superconductivity · Physics 2026-05-18 Đorđe Dangić , Manex Alkorta , Yuewen Fang , Ion Errea

Several fcc- and hcp-structured Ir-Os alloys have been recently studied up to 30 GPa at room temperature by means of synchrotron-based X-ray powder diffraction in diamond anvil cells. Using their bulk moduli -which increase with increasing…

Materials Science · Physics 2016-04-27 N. V. Sarlis , E. S. Skordas

X-ray diffraction with synchrotron radiation has been used for the first time to study chemical interaction in the MnO-ZnO system at 4.8 GPa and temperatures up to 1600 K. Above 750 K, the chemical reaction between MnO and ZnO has been…

Materials Science · Physics 2011-03-24 P. S. Sokolov , A. N. Baranov , C. Lathe , V. Z. Turkevich , V. L. Solozhenko

In the laboratory study of extreme conditions of temperature and density, the exposure of matter to high intensity radiation sources has been of central importance. Here we interrogate the performance of multi-layered targets in experiments…

Polynitrogen compounds have attracted great interest due to their potential applications as high energy density materials. Most recently, a rich variety of alkali polynitrogens (R_{x}N_{y}; R=Li, Na, and Cs) have been predicted to be stable…

Materials Science · Physics 2018-02-07 Brad A. Steele , Ivan I. Oleynik

Motivated by the recent claim of hot superconductivity with critical temperatures up to 550 K in La + x hydrides (arXiv:2006.03004), we investigate the high-pressure phase diagram of possible compounds that may have formed in the…

Superconductivity · Physics 2021-06-15 Simone Di Cataldo , Wolfgang von der Linden , Lilia Boeri

The phase stability of the MgMn2O4 spinel has been studied by means of high-pressure X-ray diffraction for pressures up to 30 GPa. Two samples with different inversion degrees have been considered. Both spinels undergo a phase transition…

Materials Science · Physics 2009-11-10 Lorenzo Malavasi , Cristina Tealdi , Monica Amboage , M. Cristina Mozzati , Giorgio Flor

Nitrides in many ways are fascinating since they often appear as superconductors, high energy density and hard materials. Though there exist a large variety of nitrides, noble gas nitrides are long missing in nature. Pursuit of noble gas…

Materials Science · Physics 2015-09-16 Feng Peng , Yanchao Wang , Hui Wang , Yunwei Zhang , Yanming Ma

Orthorhombic (space group: Pnma) Nb2P5 is a high-pressure phase that is quenchable to ambient pressure, which could viewed as the zigzag infinite P chain-inserted NbP2. We report herein the high-pressure crystal growth of Nb2P5 and the…

We report the synthesis of the AuGa2 intermetallic compound, using a direct reaction of the relevant elements at room temperature and at very low pressure. The pressure needed to synthesize the AuGa2 compound is below 1 GPa, that is at the…