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Design of a One-Dimensional Stacked Spin Peierls System with Room-Temperature Switching from Quantum Mechanical Predictions

  • Hao Yang
  • , Tao Cheng
  • , William A. Goddard
  • , Xiao Ming Ren
  • Nanjing Tech University
  • California Institute of Technology
  • Soochow University

Research output: Contribution to journalArticlepeer-review

Abstract

Planar bis-1,2-dithiolene complex anions of a transition metal (denoted as [M(dithiolato)2]- and M = Ni, Pd, or Pt ion) favor forming columnar stacks of anions in the crystal that feature S = 1/2 spin-chains, and such a spin-chain compound often undergoes a spin-Peierls-type transition, making this a promising material for conducting and magnetic switching. However, current examples show the transition temperatures are far too low for most applications. We use quantum mechanics to predict that changing the cation arrangement from the boat-type to the chair-type packing configuration in a spin-Peierls-type [Ni(dithiolato)2]- complex will substantially stabilize the antiferromagnetic coupling, dramatically increasing the transition temperature. We estimate that the [Ni(mnt)2]-based complexes (mnt = maleonitriledithiolate) with chair-type packing of cations will lead to critical temperatures of â'170, â'252, and â'310 K for S-, Se-, and Te-based mnt, respectively. We also suggest how to stabilize the chair-type configurations of these systems.

Original languageEnglish
Pages (from-to)6432-6437
Number of pages6
JournalJournal of Physical Chemistry Letters
Volume10
Issue number21
DOIs
Publication statusPublished - 7 Nov 2019
Externally publishedYes

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