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Approaching Dissolved Species in Ammonoacidic GaN Crystal Growth: A Combined Solution NMR and Computational Study

机译:在单酸GaN晶体生长中接近溶解的物种:溶液NMR和计算研究相结合

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摘要

Solutions of gallium trihalides Ga ( =F, Cl, Br, I) and their ammoniates in liquid ammonia were studied at ambient temperature under autogenous pressure by multinuclear ( Ga, Cl, Br) NMR spectroscopy. To unravel the role of pH, the analyses were done both in absence and in presence of ammonium halides, which are employed as mineralizers during ammonoacidic gallium nitride crystal growth. While gallium trifluoride and its ammoniate were found to be too sparingly soluble to give rise to a NMR signal, the spectra of solutions of the heavier halides reveal the presence of a single gallium‐containing species in all cases. DFT calculations and molecular dynamics simulations suggest the identification of this species as consisting of a [Ga(NH ) ] cation and up to six surrounding halide anions, resulting in an overall trend towards negative complex charge. Quantitative Ga NMR studies on saturated solutions of GaCl containing various amounts of additional NH Cl revealed a near linear increase of GaCl solubility with mineralizer concentration of about 0.023 mol GaCl per mol NH Cl at room temperature. These findings reflect the importance of Coulombic shielding for the inhibition of oligomerization and precipitation processes and help to rationalize both the low solubility of gallium halides in neutral ammonia solution and, in turn, the proliferating effect of the mineralizer during ammonoacidic gallium nitride formation.
机译:三卤化镓镓溶液 通过多核(Ga,Cl,Br)NMR光谱在室温和自生压力下研究(= F,Cl,Br,I)及其在液态氨中的氨化物。为了阐明pH的作用,在不存在和存在卤化铵的情况下都进行了分析,卤化铵在铵盐氮化镓晶体生长过程中用作矿化剂。尽管发现三氟化镓及其氨化物的溶解度很小,无法产生NMR信号,但较重的卤化物溶液的光谱显示,在所有情况下都存在单个含镓物质。 DFT计算和分子动力学模拟表明,该物种被鉴定为由[Ga(NH)]阳离子和多达六个周围的卤化物阴离子组成,从而导致总体趋势趋向于负复合电荷。在含有各种量额外NH Cl的GaCl饱和溶液中进行的定量Ga NMR研究表明,在室温下,矿化剂浓度约为每摩尔NH Cl约0.023 -1 mol GaCl,GaCl溶解度几乎呈线性增加。这些发现反映了库仑屏蔽对抑制低聚和沉淀过程的重要性,并有助于使卤化镓在中性氨溶液中的低溶解度合理化,并进而使铵化单酸氮化镓期间矿化剂的增殖作用合理化。

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