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首页> 外文期刊>The Journal of Chemical Physics >NEUTRON DIFFRACTION STUDY OF (ND4)(2)SECL6, (ND4)(2)PTCL6, AND (ND4)(2)PTBR6, CRYSTALS - THE ORIGIN OF THE STRONG DEUTERIUM SUBSTITUTION EFFECT ON THE PHASE TRANSITIONS
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NEUTRON DIFFRACTION STUDY OF (ND4)(2)SECL6, (ND4)(2)PTCL6, AND (ND4)(2)PTBR6, CRYSTALS - THE ORIGIN OF THE STRONG DEUTERIUM SUBSTITUTION EFFECT ON THE PHASE TRANSITIONS

机译:(ND4)(2)SECL6,(ND4)(2)PTCL6和(ND4)(2)PTBR6,晶体的中子衍射研究-强氘取代作用对相变的影响

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Neutron powder diffraction experiments of (ND4)(2)SeCl6, (ND4)(2)PtCl6 and (ND4)(2)PtBr6 were performed to investigate the mechanism of the strong deuterium substitution effect on the phase transitions of the (NH4)(2)MX6 family, The isotope effect is strong in the first and second compounds and weak in the third, The data were collected in the d-spacing range 0.5-4.3 Angstrom by using a time-of-flight powder diffractometer VEGA installed at the pulsed cold neutron source in KEK. The intensity data of high-temperature phases (HTP) were measured at the temperatures corresponding to 1.3T(c) (T-c: transition temperature), and the low-temperature phases (LTP) at 4 K. The HTPs of the three compounds have an antifluorite type cubic structure (a approximate to 9.8 Angstrom and Z=4) as previously reported while the LTPs of (ND4)(2)PtCl6 and (ND4)(2)PtBr6 are tetragonal with a tentative space group P4(2) and unit cell dimensions similar to those of the HTPs. The LTP of (ND4)(2)SeCl6 may have an orthorhombic structure with a larger unit cell. The Rietveld refinement and Fourier analysis for the HTPs revealed that the D atoms in (ND4)(2)SeCl6 and (ND4)(2)PtCl6 are broadly distributed around the crystallographic threefold rotation axis with three weak overlapping maxima, while that of (ND4)(2)PtBr6 is more strongly localized at three positions away from the threefold rotation axis. These results indicate that the transitions are due to orientational ordering of the ND; ions and that the strong isotope effects may be quantum effects associated with the ND4+ motion in a shallow rotational potential. (C) 1997 American Institute of Physics. [References: 41]
机译:进行(ND4)(2)SeCl6,(ND4)(2)PtCl6和(ND4)(2)PtBr6的中子粉末衍射实验,以研究强氘取代效应对(NH4)( 2)MX6家族,第一种和第二种化合物的同位素效应很强,而第三种化合物的同位素效应很弱,使用安装在仪器上的飞行时间粉末衍射仪VEGA在d间距0.5-4.3埃范围内收集了数据。 KEK的脉冲冷中子源。在对应于1.3T(c)的温度下测量高温相(HTP)的强度数据(Tc:转变温度),在4 K下测量低温相(LTP)的强度数据。这三种化合物的HTP具有先前报道的一种抗萤石型立方结构(大约9.8埃,Z = 4),而(ND4)(2)PtCl6和(ND4)(2)PtBr6的LTP是四边形的,暂定空间群为P4(2)/ n和单位单元尺寸类似于HTP。 (ND4)(2)SeCl6的LTP可能具有正交晶格结构,具有较大的晶胞。对HTP的Rietveld精炼和傅里叶分析表明(ND4)(2)SeCl6和(ND4)(2)PtCl6中的D原子广泛分布在晶体学三重旋转轴周围,具有三个弱重叠最大值,而(ND4) )(2)PtBr6更强地定位在远离三重旋转轴的三个位置。这些结果表明,过渡是由于ND的取向顺序引起的。离子和强同位素效应可能是与浅旋转势中ND4 +运动相关的量子效应。 (C)1997美国物理研究所。 [参考:41]

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