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首页> 外文期刊>International Journal of Quantum Chemistry >Stabilization of hexagonal close-packed metallic nickel for alumina-supported systems prepared from Ni(II) glycinate
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Stabilization of hexagonal close-packed metallic nickel for alumina-supported systems prepared from Ni(II) glycinate

机译:由甘氨酸镍(II)制备的氧化铝支撑体系的六角形密堆积金属镍的稳定性

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The decomposition in flowing argon of the neutral complex [Ni-11(glycinate)2(H2O)(2)] leads to a mixture of face-centered cubic (fcc) and hexagonal close-packed (hcp) metallic nickel. The latter is the main phase when the Ni(II) complex is supported on alumina. Unlike most hexagonal Ni phases described earlier, and similar to hexagonal Ni3C., the unit cell parameters (a = 0.2493 and c = 0.4084 nm) lead to Ni-Ni distances equal to those encountered in fcc Ni. TEM shows that the nanoparticles are protected by graphite layers, whose elimination by heating in hydrogen results in transformation to the fcc phase and crystal growth. Magnetic measurements provide evidence of the coexistence of superparamagnetic and ferromagnetic nanoparticles. This result is in line with the broad size distribution observed by TEM and is interpreted on the basis of the metallic character of hcp Ni particles. (c) 2006 Elsevier Inc. All rights reserved.
机译:中性配合物[Ni-11(甘氨酸盐)2(H2O)(2)]在流动氩气中的分解导致面心立方(fcc)和六方密堆积(hcp)金属镍的混合物。当Ni(II)配合物负载在氧化铝上时,后者是主要相。与先前描述的大多数六角形Ni相不同,并且类似于六角形Ni3C,单位晶胞参数(a = 0.2493和c = 0.4084 nm)导致Ni-Ni距离等于在fcc Ni中遇到的距离。 TEM显示,纳米颗粒受到石墨层的保护,石墨层通过在氢气中加热而消除,导致转变为fcc相和晶体生长。磁性测量提供了超顺磁性和铁磁性纳米粒子共存的证据。该结果与通过TEM观察到的宽尺寸分布一致,并且基于hcp Ni颗粒的金属特性来解释。 (c)2006 Elsevier Inc.保留所有权利。

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