All Stories

  1. Novel Ultrahard Monoclinic Carbon Allotropes from Crystal Structure Engineering and First Principles
  2. Anomalous heat capacity and phonon density of states of superhard nanostructured cubic boron nitride
  3. Melting of Boron-Rich Chalcogenides B12S and B12Se under Pressure
  4. Denser than diamond: novel ultrahard orthorhombic C12
  5. Novel ultrahard monoclinic carbon allotropes from crystal structure engineering and first principles
  6. ZnO-ZnTe composites crystallized from melt at high pressure: Thermoelectric and transport properties
  7. On the Melting of Boron Chalcogenides B6S and B6Se under Pressure
  8. Magnetic and transport properties of cubic Fe1-xZnxO solid solutions with a rock salt structure synthesized at high pressure
  9. Polytypes and twins in new boron-rich chalcogenides B6S and B6Se synthesized at high pressure
  10. Novel Superhard Boron Nitrides, B2N3 and B3N3: Crystal Chemistry and First-Principles Studies
  11. On Melting of Boron Arsenide under Pressure
  12. Novel Superhard Tetragonal Hybrid sp3/sp2 Carbon Allotropes Cx (x = 5, 6, 7): Crystal Chemistry and Ab Initio Studies
  13. Structural Features of B6S and B6Se Synthesized at High Pressure
  14. Novel Tetragonal Boron Pnictides BX (X = N, P, As, Sb, Bi) with Square B2X2 Motifs from Crystal Chemistry and First Principles
  15. Superhard Hexagonal sp3-Bonded BN Polytypes and BC2N from Crystal Chemistry and First Principles
  16. High-Pressure Phases of Boron Pnictides BX (X = As, Sb, Bi) with Quartz Topology from First Principles
  17. Novel Ultrahard Carbon Allotropes from Crystal Chemistry and First Principles: Rhombohedral ene-C21 and yne-C24
  18. Superdense Hexagonal BP and AlP with Quartz Topology: Crystal Chemistry and DFT Study
  19. Ultrahigh-Density Superhard Hexagonal BN and SiC with Quartz Topology from Crystal Chemistry and First Principles
  20. On Crystal Structure of Superhard Cubic BC2N
  21. Crystal chemistry and ab initio investigations of new hard tetragonal C9 and C12 allotropes with edge- and corner-sharing C4 tetrahedra and diamond-related properties
  22. Phase stability and thermal expansion of ZnO solid solutions with 3d transition metal oxides synthesized at high pressure
  23. Local structure, thermodynamics, and melting of boron phosphide at high pressures by deep learning-driven ab initio simulations
  24. First Principles Search for Novel Ultrahard High-Density Carbon Allotropes: Hexagonal C6, C9, and C12
  25. Chemical Pressure Effect on the Stabilization of Rock-Salt ZnO—Lin−2MeOn−1 Solid Solutions Synthesized at High Pressure
  26. High-Pressure Synthesis of Cubic ZnO and Its Solid Solutions with MgO Doped with Li, Na, and K
  27. Crystal Chemistry and First Principles Studies of Novel Superhard Tetragonal C7, C5N2, and C3N4
  28. p–T Phase Diagram of Phosphorus Revisited
  29. Novel ultrahard sp2/sp3 hybrid carbon allotrope from crystal chemistry and first principles: Body-centered tetragonal C6 (‘neoglitter’)
  30. Novel Ultrahard Extended Hexagonal C10, C14 and C18 Allotropes with Mixed sp2/sp3 Hybridizations: Crystal Chemistry and Ab Initio Investigations
  31. Prediction of Novel Ultrahard Phases in the B–C–N System from First Principles: Progress and Problems
  32. Corrigendum to “The simplest dense carbon allotrope: Ultra-hard body-centered tetragonal C4” [J. Solid State Chem. 314 (2022) 123424]
  33. Nanostructuring and stabilization of metastable rock-salt ZnO: impact of high-pressure media and compression geometry
  34. New superhard tetragonal BCN from crystal chemistry and first principles
  35. On Hardness of Boron Subarsenide B12As2
  36. TEM study of boron phosphide: Discovery of rhombohedral BP
  37. Computational prediction of new magnetic materials
  38. Novel (Super)Hard SiCN from Crystal Chemistry and First Principles
  39. Novel ultra-hard hexacarbon allotropes from first principles
  40. Hybrid dense carbon allotropes from crystal chemistry and first principles: 'glitter' C6, 'isoglitter' C8 and 'metaglitter' C8
  41. ZnO under Pressure: From Nanoparticles to Single Crystals
  42. Novel superhard tetragonal BCN from crystal chemistry and first principles
  43. Doping Nature of Group V Elements in ZnO Single Crystals Grown from Melts at High Pressure
  44. Cathodoluminescence of zinc oxide crystals grown from melt under high pressure in the presence of ytterbium oxide
  45. Cathodoluminescence of zinc and ytterbium oxide poly- and single crystals grown from melt under high pressure
  46. Polymorphism of boron phosphide: Theoretical and experimental assessments
  47. Novel ultra-hard hexacarbon allotropes from first principles
  48. Comment on “Polymorphism of boron phosphide: theoretical investigation and experimental assessment” by V. L. Solozhenko and S. F. Matar, J. Mater. Chem. C, 2022, 10, 3937
  49. Polymorphism of boron phosphide: theoretical investigation and experimental assessment
  50. Hybrid Dense Carbon Allotropes from Crystal Chemistry and First Principles: 'Glitter' C6, 'Isoglitter' C8 and 'Metaglitter' C8
  51. TEM study of boron phosphide: Discovery of rhombohedral BP
  52. First-principles Investigations of Tricarbon: From the isolated C3 molecule to a novel ultra-hard anisotropic solid.
  53. Oxidation Resistance of Hard Boron-Rich Chalcogenides B6X and B12X (X = S, Se)
  54. Ultra-hard rhombohedral carbon by crystal chemistry and ab initio investigations
  55. Hardness of New Boron-Rich Chalcogenides B12S and B12Se
  56. Crystal chemistry and ab initio prediction of ultrahard rhombohedral B2N2 and BC2N
  57. Oxidation resistance of hard boron-rich chalcogenides B6X and B12X (X = S, Se)
  58. Equations of state of new boron-rich selenides B6Se and B12Se
  59. Hardness of new boron-rich chalcogenides B12S and B12Se
  60. Heat Capacities of Nanostructured Wurtzite and Rock Salt ZnO: Challenges of ZnO Nano-Phase Diagram
  61. First-principles studies of the electronic and magnetic structures and bonding properties of boron subnitride B13N2
  62. The Effect of Doping on the Lattice Parameter and Properties of Cubic Boron Nitride
  63. Melting and decomposition of orthorhombic B6Si under high pressure
  64. Discovery of new boron-rich chalcogenides: orthorhombic B6X (X=S, Se)
  65. Thermoelastic equation of state and melting of Mg metal at high pressure
  66. A hunt for ultrahard materials
  67. Thermal expansion of α-boron and some boron-rich pnictides
  68. High-pressure synthesis of superhard and ultrahard materials
  69. Mechanical properties of ultra-hard nanocrystalline cubic boron nitride
  70. Myths about new ultrahard phases
  71. Mechanical properties of boron phosphides
  72. Nanotwinning in boron subphosphide B12P2
  73. Thermal expansion of boron subnitrides
  74. Equation of state of boron subarsenide B12As2 to 47 GPa
  75. Boron monosulfide: Equation of state and pressure-induced phase transition
  76. Phase diagram of the B–BN system at pressures up to 24 GPa
  77. Mechanical properties of superhard boron subnitride B13N2
  78. On the thermodynamic aspect of zinc oxide polymorphism
  79. Structure and equation of state of tetragonal boron subnitride B50N2
  80. Integrated form of the Anderson-Grüneisen equation of state for p-V-T data fit
  81. On melting of boron subnitride B13N2 under pressure
  82. Thermoelastic equation of state of boron subphosphide B12P2
  83. Orthorhombic boron oxide under pressure
  84. High-pressure design of advanced BN-based materials
  85. Phase diagram of the B–B2O3 system at pressures to 24 GPa
  86. Melting of B12P2boron subphosphide under pressure
  87. Ultra-fast mechanochemical synthesis of boron phosphides, BP and B12P2
  88. Equations of state of novel solids synthesized under extreme pressure–temperature conditions
  89. On melting of boron phosphide under pressure
  90. Thermodynamically consistent p–T phase diagram of boron oxide B2O3
  91. On electrical conductivity of melts of boron and its compounds under pressure
  92. Optical phonon modes in rhombohedral boron monosulfide under high pressure
  93. A novel phase of beryllium fluoride at high pressure
  94. Thermodynamic calculation of the B-C system at pressures to 24 GPa
  95. Boron phosphide under pressure: In situ study by Raman scattering and X-ray diffraction
  96. Thermoelastic equation of state of boron suboxide B6O up to 6 GPa and 2700 K: Simplified Anderson-Grüneisen model and thermodynamic consistency
  97. Equation of state of single-crystal cubic boron phosphide
  98. Low-temperature thermal expansion of rock-salt ZnO
  99. Self-propagating high-temperature synthesis of boron subphosphide B12P2
  100. High-Pressure Synthesis of Novel Superhard Phases
  101. Self-propagating high-temperature synthesis of boron phosphide
  102. Phase Equilibria in the B–BN–B2O3 System at 5 GPa
  103. Equilibrium p-T phase diagram of boron
  104. Nanocrystallinity as a Route to Metastable Phases: Rock Salt ZnO
  105. Crystal structure of dense pseudo-cubic boron allotrope, pc-B52, by powder X-ray diffraction
  106. Congruent melting and rapid single-crystal growth of ZnO at 4 GPa
  107. Effect of nanostructuration on compressibility of cubic BN
  108. On melting of silicon carbide under pressure
  109. On melting of B4C boron carbide under pressure
  110. Synthesis of ultrahard nanocrystalline cubic boron nitride
  111. Erratum to: “The high-pressure phase of boron, γ-B28: Disputes and conclusions of 5 years after discovery”
  112. Experimental study and critical review of structural, thermodynamic and mechanical properties of superhard refractory boron suboxide B6O
  113. The high-pressure phase of boron, γ-B28
  114. High pressure synthesis of LiMeO2–ZnO (Me=Fe3+, Ti3+) solid solutions with a rock salt structure
  115. Kinetics of the Wurtzite-to-Rock-Salt Phase Transformation in ZnO at High Pressure
  116. High-pressure route to superhard boron-rich solids
  117. High-pressure synthesis of MnO–ZnO solid solutions with rock salt structure:in situX-ray diffraction studies
  118. Structural changes and phase stability of graphitelike BC3 under explosive shock-wave loading
  119. On crystal lattice parameters of graphite-like phases of the B-C system
  120. Thermodynamic model of hardness: Particular case of boron-rich solids
  121. Phase Diagram of the B−BN System at 5 GPa
  122. High-pressure synthesis and luminescent properties of cubic ZnO/MgO nanocomposites
  123. High-pressure synthesis of FeO–ZnO solid solutions with rock salt structure:in situX-ray diffraction studies
  124. Synthesis and thermal stability of cubic ZnO in the salt nanocomposites
  125. High-Pressure Synthesis of Novel Superhard Phases in the B–C–N–O System
  126. 300-K equation of state of rhombohedral boron subnitride,
  127. High-pressure study of graphite-like B–C phases
  128. High-pressure synthesis of novel superhard phases in the B‒C‒N system: recent achievements
  129. Boron: a hunt for superhard polymorphs
  130. Equation of state of orthorhombic boron, γ-B28
  131. Hardness of materials at high temperature and high pressure
  132. First and second-order Raman scattering of B6O
  133. Ionic high-pressure form of elemental boron
  134. Nanocarbons by High-Temperature Decomposition of Graphite Oxide at Various Pressures
  135. Chemical interaction in the B–BN system at high pressures and temperatures.
  136. Portable multi-anvil device forin situangle-dispersive synchrotron diffraction measurements at high pressure and temperature
  137. Erratum: Ultimate Metastable Solubility of Boron in Diamond: Synthesis of Superhard DiamondlikeBC5[Phys. Rev. Le...
  138. Transformations of graphitelike B-C phases under dynamic laser-driven pressure loading
  139. On the problem of the phase relations in the B-BN system at high pressures and temperatures
  140. Ionic high-pressure form of elemental boron
  141. Synthesis of superhard diamondlike BC5
  142. On the hardness of a new boron phase, orthorhombic γ-B28
  143. Synthesis of rock-salt MeO–ZnO solid solutions (Me=Ni2+, Co2+, Fe2+, Mn2+) at high pressure and high temperature
  144. The interrelation between hardness and compressibility of substances and their structure and thermodynamic properties
  145. Thermodynamic aspects of materials’ hardness: prediction of novel superhard high-pressure phases
  146. Colossal Pressure-Induced Lattice Expansion of Graphite Oxide in the Presence of Water
  147. Electro-and magnetotransport properties of disordered carbon phases synthesized from C60 fullerite at moderate pressures P syn < 1.5 GPa
  148. High‐temperature Transitions of C60at Moderate Pressures
  149. Phase Diagram of the B−B2O3System at 5 GPa: Experimental and Theoretical Studies
  150. Comment on "Synthesis of Ultra-Incompressible Superhard Rhenium Diboride at Ambient Pressure"
  151. Raman scattering from turbostratic graphitelike BC4 under pressure
  152. Rhombohedral boron subnitride, B13N2, by X-ray powder diffraction
  153. Cubic phases ofBC2N
  154. Bulk nanostructured carbon phases prepared from C60: approaching the ‘ideal’ hardness
  155. Superhard nanocomposite of dense polymorphs of boron nitride: Noncarbon material has reached diamond hardness
  156. Solid-state synthesis of boron subnitride, B6N: myth or reality?
  157. Investigation of novel superhard materials by multi-cycling nanoindentation
  158. High-pressure formation of MgxZn1−xO solid solutions with rock salt structure
  159. Equation of state and thermal stability of Al3BC
  160. Equation of state of graphite-like BC
  161. Compact multianvil device forin situstudies at high pressures and temperatures
  162. Synthesis of superhard materials
  163. Reversible pressure-induced structure changes in turbostratic BN–C solid solutions
  164. Identification of the diamond-like B–C phase by confocal Raman spectroscopy
  165. Equation of state of aluminum silicon carbide α-Al4SiC4
  166. Atomic force microscopy studies of cubic BC2N, a new superhard phase
  167. Cubic MgxZn1−xO wide band gap solid solutions synthesized at high pressures
  168. Equation of state of aluminum carbide Al4C3
  169. In situ studies of high-pressure phase transformations in the B–C–N system
  170. Equation of state of silicon nitride carbodiimide Si2CN4
  171. Femtosecond and ultraviolet laser irradiation of graphitelike hexagonal boron nitride
  172. What does 'harder than diamond' mean?
  173. Synthesis of bulk superhard semiconducting B–C material
  174. On the cubic boron nitride crystallization in fluid systems
  175. Raman studies of cubic BC2N, a new superhard phase
  176. Synthesis of Superhard Phases: In Situ Studies
  177. Phase transformations in the TiO2–SiO2system at high pressures and temperatures
  178. Elastic moduli of the superhard cubicBC2
  179. Synchrotron radiation study of MgB2formation under high pressure
  180. Equation of state and phase stability of turbostratic carbon nitride
  181. Kinetics of Diamond Crystallization from the Melt of the Fe−Ni−C System
  182. Synchrotron radiation studies of the kinetics of cBN crystallization in the NH4F–BN system
  183. ATEM-EELS study of new diamond-like phases in the B–C–N system
  184. In situ studies of boron nitride crystallization from BN solutions in supercritical N–H fluid at high pressures and temperatures
  185. Mechanical properties of cubic BC2N, a new superhard phase
  186. Equation of state of turbostratic boron nitride
  187. Bandgap energy of graphite-like hexagonal boron nitride
  188. Synthesis of superhard cubic BC2N
  189. Compression and thermal expansion of rhombohedral boron nitride at high pressures and temperatures
  190. 300-K Equation of State and High-Pressure Phase Stability of Al3BC3
  191. On Nucleation of Cubic Boron Nitride in the BN−MgB2 System
  192. Refined Phase Diagram of Boron Nitride
  193. hBN ↔ cBN equilibrium line calculated from experimental data on the cBN-to-hBN transformation to 1.4 GPa
  194. Equation of state of wurtzitic boron nitride to 66 GPa
  195. Kinetics of cBN crystallization in the Li3N-BN system at 6.6 GPa
  196. Compression and thermal expansion of hexagonal graphite-like boron nitride up to 7 GPa and 1800 K
  197. High pressure phase equilibria in the Li3N-BN system: in situ studies
  198. Thermal phase stability of rhombohedral boron nitride
  199. Thermodynamic analysis of the bn-nh, system at high pressures
  200. Structural peculiarities of graphite-like boron nitride produced by crystallization in the region of metastability
  201. Isothermal compression of hexagonal graphite-like boron nitride up to 12 GPa
  202. Lattice Parameters of Boron Nitride Polymorphous Modifications as a Function of Their Crystal-Structure Perfection
  203. On the low-pressure synthesis of cubic boron nitride
  204. Thermoanalytical study of the polymorphic transformations of wurtzitic boron nitride modification into graphite-like ones
  205. Thermodynamic Properties of Boron Nitride
  206. New concept of BN phase diagram: an applied aspect
  207. Isothermal compression of rhombohedral boron nitride up to 14 GPa
  208. The structural aspect of wurtzite boron nitride phase stabilization
  209. Inverse drop-calorimetry. A study of metastable and nonequilibrium phases
  210. Thermodynamics of dense boron nitride modifications and a new phase P,T diagram for BN
  211. Low-temperature heat capacity and thermodynamic properties of four boron nitride modifications
  212. Thermoanalytical study of the polymorphic transformation of cubic into graphite-like boron nitride
  213. Structure analysis of the cubic boron nitride crystals
  214. Reactivity of the wurtzitic boron nitride at phase transition
  215. Reduction of the laminar compound of graphite with FeCl3 by hydrogen at high pressure
  216. 35Cl NQR Spectra of a layer compound of graphite with tin(IV) chloride
  217. Isobaric thermoanalytical study of the decomposition process of interstitial graphite-Iron(III) chloride compounds