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石墨烯纳米带及其相关体系的电子基态的半金属性和自旋污染:不可能的妥协?

Half-metallicity and spin-contamination of the electronic ground state of graphene nanoribbons and related systems: an impossible compromise?

机构信息

Theoretical Chemistry and Molecular Modelling, Hasselt University, Agoralaan, Gebouw D, B-3590 Diepenbeek, Belgium.

出版信息

J Chem Phys. 2011 Sep 14;135(10):104704. doi: 10.1063/1.3626554.

DOI:10.1063/1.3626554
PMID:21932915
Abstract

An analysis using the formalism of crystalline orbitals for extended systems with periodicity in one dimension demonstrates that any antiferromagnetic and half-metallic spin-polarization of the edge states in n-acenes, and more generally in zigzag graphene nanoislands and nanoribbons of finite width, would imply a spin contamination S(2) that increases proportionally to system size, in sharp and clear contradiction with the implications of Lieb's theorem for compensated bipartite lattices and the expected value for a singlet (S = 0) electronic ground state. Verifications on naphthalene, larger n-acenes (n = 3-10) and rectangular nanographene islands of increasing size, as well as a comparison using unrestricted Hartree-Fock theory along with basis sets of improving quality against various many-body treatments demonstrate altogether that antiferromagnetism and half-metallicity in extended graphene nanoribbons will be quenched by an exact treatment of electron correlation, at the confines of non-relativistic many-body quantum mechanics. Indeed, for singlet states, symmetry-breakings in spin-densities are necessarily the outcome of a too approximate treatment of static and dynamic electron correlation in single-determinantal approaches, such as unrestricted Hartree-Fock or Density Functional Theory. In this context, such as the size-extensive spin-contamination to which it relates, half-metallicity is thus nothing else than a methodological artefact.

摘要

利用晶体轨道的形式体系对具有一维周期性的扩展系统进行分析表明,无论在 n-并苯中还是在锯齿形石墨烯纳米岛和纳米带中(宽度有限),边缘态的反铁磁和半金属自旋极化都将导致自旋污染 <线性跨度>S(2)<线性跨度> 按比例随系统尺寸增加,这与 Lieb 定理对补偿二分格子的含义以及单重态(S = 0)电子基态的预期值形成鲜明而明确的矛盾。对萘、更大的 n-并苯(n = 3-10)和尺寸不断增大的矩形纳米石墨烯岛的验证,以及与各种多体处理相比的非限制哈特利-福克理论和基组质量改进的使用,都表明扩展的石墨烯纳米带中的反铁磁性和半金属性将被电子相关的精确处理所抑制,这是在非相对论多体量子力学的限制之内。事实上,对于单重态,自旋密度的对称性破缺必然是单行列式方法(如非限制哈特利-福克或密度泛函理论)中静态和动态电子相关处理过于近似的结果。在这种情况下,与其相关的大小扩展性自旋污染一样,半金属性只不过是一种方法论上的人为产物。

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