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采用氟化物路线合成的氮氧化镎的晶体和电子结构。

Crystal and electronic structures of neptunium nitrides synthesized using a fluoride route.

机构信息

Harry Reid Center for Environmental Studies, University of Nevada, Las Vegas, Box 454009, 4505 Maryland Parkway, Las Vegas, Nevada 89154, USA.

出版信息

J Am Chem Soc. 2012 Feb 15;134(6):3111-9. doi: 10.1021/ja209503n. Epub 2012 Feb 6.

DOI:10.1021/ja209503n
PMID:22280303
Abstract

A low-temperature fluoride route was utilized to synthesize neptunium mononitride, NpN. Through the development of this process, two new neptunium nitride species, NpN(2) and Np(2)N(3), were identified. The NpN(2) and Np(2)N(3) have crystal structures isomorphous to those of UN(2) and U(2)N(3), respectively. NpN(2) crystallizes in a face-centered cubic CaF(2)-type structure with a space group of Fm3m and a refined lattice parameter of 5.3236(1) Å. The Np(2)N(3) adopts the body-centered cubic Mn(2)O(3)-type structure with a space group of Ia3. Its refined lattice parameter is 10.6513(4) Å. The NpN synthesis at temperatures ≤900 °C using the fluoride route discussed here was also demonstrated. Previous computational studies of the neptunium nitride system have focused exclusively on the NpN phase because no evidence was reported experimentally on the presence of NpN(x) systems. Here, the crystal structures of NpN(2) and Np(2)N(3) are discussed for the first time, confirming the experimental results by density functional calculations (DFT). These DFT calculations were performed within the local-density approximation (LDA+U) and the generalized-gradient approximation (GGA+U) corrected with an effective Hubbard parameter to account for the strong on-site Coulomb repulsion between Np 5f electrons. The effects of the spin-orbit coupling in the GGA+U calculations have also been investigated for NpN(2) and NpN.

摘要

采用低温氟化物路线合成了一氮化钚(NpN)。通过该工艺的开发,鉴定出两种新的氮化钚物种,即 NpN(2)和 Np(2)N(3)。NpN(2)和 Np(2)N(3)的晶体结构分别与 UN(2)和 U(2)N(3)的晶体结构同构。NpN(2)具有面心立方 CaF(2)型结构,空间群为 Fm3m,精修晶格参数为 5.3236(1)Å。Np(2)N(3)采用体心立方 Mn(2)O(3)型结构,空间群为 Ia3。其精修晶格参数为 10.6513(4)Å。本文还讨论了在温度≤900°C 下使用氟化物路线合成 NpN 的方法。此前对钚氮化物体系的计算研究仅集中在 NpN 相,因为实验上没有报道 NpN(x)体系的存在。本文首次讨论了 NpN(2)和 Np(2)N(3)的晶体结构,通过密度泛函计算(DFT)证实了实验结果。这些 DFT 计算是在局域密度近似(LDA+U)和广义梯度近似(GGA+U)下进行的,校正了有效哈伯参数以考虑 Np 5f 电子之间的强局域库仑排斥作用。还研究了 GGA+U 计算中自旋轨道耦合对 NpN(2)和 NpN 的影响。

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