Frost Mungo, Abraham Kilian, Goncharov Alexander F, McWilliams R Stewart, Husband Rachel J, Andrzejewski Michal, Appel Karen, Baehtz Carsten, Bergermann Armin, Brown Danielle, Bykova Elena, Celeste Anna, Edmund Eric, Hartley Nicholas J, Glazyrin Konstantin, Graafsma Heinz, Jaisle Nicolas, Konôpková Zuzana, Laurus Torsten, Lin Yu, Massani Bernhard, Schörner Maximilian, Schulze Maximilian, Strohm Cornelius, Tang Minxue, Younes Zena, Steinle-Neumann Gerd, Redmer Ronald, Glenzer Siegfried H
High Energy Density Sciences Division, SLAC National Accelerator Laboratory, 2575 Sand Hill Road, Menlo Park, CA, 94025, USA.
Institut für Physik, Universität Rostock, 18051, Rostock, Germany.
Angew Chem Int Ed Engl. 2025 Sep 15;64(38):e202505811. doi: 10.1002/anie.202505811. Epub 2025 Aug 4.
Gold is an unreactive metal and its chemical interactions with hydrogen have only recently been explored. Here, we report the formation of gold hydride above 40 GPa and 2200 K in X-ray free electron laser heated diamond anvil cells using various hydrocarbons as hydrogen sources. Above 40 GPa, a hexagonal phase emerges close to the gold melting point, corresponding to a hydride with stoichiometry , with increasing from 0 to near 1 with pressure from 40 to 80 GPa. This is a high-temperature phase which reverts to face centered cubic gold on cooling to 295 K. Accompanying DFT-MD simulations are in excellent agreement with experiment and reveal the structure to consist of an hexagonal close packed gold lattice with atomic hydrogen disordered in the interstices. The hydrogen is superionic and exhibits high diffusivity through the crystalline gold lattice. Our results present the first solid-state binary compound of gold and hydrogen.
金是一种化学性质不活泼的金属,其与氢的化学相互作用直到最近才被研究。在此,我们报告了在X射线自由电子激光加热的金刚石对顶砧池中,使用各种碳氢化合物作为氢源,在40吉帕斯卡以上和2200开尔文时氢化金的形成。在40吉帕斯卡以上,接近金熔点时出现了一个六方相,对应于一种化学计量比为 的氢化物,随着压力从40吉帕斯卡增加到80吉帕斯卡, 从0增加到接近1。这是一个高温相,冷却到295开尔文时会转变为面心立方金。伴随的密度泛函理论分子动力学模拟与实验结果高度吻合,揭示该结构由六方密堆积的金晶格组成,氢原子无序地分布在晶格间隙中。氢是超离子态的,并且在晶体金晶格中表现出高扩散率。我们的结果展示了首个金与氢的固态二元化合物。