首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Synthesis, Characterization, and Thermal Properties of Homoleptic Rare-Earth Guanidinates: Promising Precursors for MOCVD and ALD of Rare-Earth Oxide Thin Films
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Synthesis, Characterization, and Thermal Properties of Homoleptic Rare-Earth Guanidinates: Promising Precursors for MOCVD and ALD of Rare-Earth Oxide Thin Films

机译:均相稀土胍盐的合成,表征和热性能:稀土氧化物薄膜的MOCVD和ALD的有前途的前体

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摘要

Eight novel homoleptic tris-guanidinato complexes M[(NiPr)(2)CNR2](3) [M = Y (a), Gd (b), Dy (c) and R = Me (1), Et (2), Pr-i (3)] have been synthesized and characterized by NMR, CHN-analysis, mass spectrometry and infrared spectroscopy. Single crystal structure analysis revealed that all the compounds are monomers with the rare-earth metal center coordinated to six nitrogen atoms of the three chelating guanidinato ligands in a distorted trigonal prism geometry. With the use of TGA/DTA and isothermal TGA analysis, the thermal characteristics of all the complexes were studied in detail to evaluate their suitability as precursors for thin film deposition by MOCVD and ALD. The Pr-i-Me2N-guanidinates of Y, Gd and Dy (la-c) showed excellent thermal characteristics in terms of thermal stability and volatility. Additionally, the thermal stability of the iPr-Me2N-guanidinates of Y and Dy (1a, c) in solution was investigated by carrying out NMR decomposition experiments and both the compounds were found to be remarkably stable. All these studies indicate that iPr-Me2N-guanidinates of Y, Gd and Dy (la-c) have the prerequisites for MOCVD and ALD applications which were confirmed by the successful deposition of Gd2O3 and Dy2O3 thin films on Si(100) substrates. The MOCVD grown films of Gd2O3 and Dy2O3 were highly oriented in the cubic phase, while the ALD grown films were amorphous.
机译:八种新的均一的tris-guanidinato配合物M [(NiPr)(2)CNR2](3)[M = Y(a),Gd(b),Dy(c)和R = Me(1),Et(2), Pr-i(3)]已通过NMR,CHN分析,质谱和红外光谱进行了合成和表征。单晶结构分析表明,所有化合物都是具有扭曲的三角棱柱几何形状的稀土金属中心与三个螯合胍基配体的六个氮原子配位的单体。通过使用TGA / DTA和等温TGA分析,详细研究了所有配合物的热特性,以评估它们作为通过MOCVD和ALD沉积薄膜的前体的适用性。 Y,Gd和Dy(Ia-c)的Pr-i-Me2N-胍盐在热稳定性和挥发性方面表现出出色的热特性。此外,通过进行NMR分解实验研究了Y和Dy(1a,c)的iPr-Me2N-胍盐在溶液中的热稳定性,发现这两种化合物都非常稳定。所有这些研究表明,Y,Gd和Dy(Ia-c)的iPr-Me2N-胍盐具有MOCVD和ALD应用的先决条件,这已通过在Si(100)衬底上成功沉积Gd2O3和Dy2O3薄膜得到了证实。 Gd2O3和Dy2O3的MOCVD生长膜在立方相中高度取向,而ALD生长膜是非晶态。

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