4.6 Article

Coinage metalides: a new class of excess electron compounds with high stability and large nonlinear optical responses

Journal

PHYSICAL CHEMISTRY CHEMICAL PHYSICS
Volume 22, Issue 16, Pages 8476-8484

Publisher

ROYAL SOC CHEMISTRY
DOI: 10.1039/c9cp06894e

Keywords

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Funding

  1. National Natural Science Foundation of China [21603032, 2184019]
  2. Natural Science Foundation of Fujian Province [2016J05032]
  3. State Key Development Program for Basic Research of China [2013CB834801]
  4. Joint Funds for the Innovation of Science and Technology, Fujian Province [2017Y9119]
  5. Training Program for the Distinguished Young Scholar in the University of Fujian Province [2018B032]

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The possibility of using coinage metal atoms as excess electron acceptors is examined for the first time by designing a new class of M+-1-M '(-) (M = Li, Na, and K; M ' = Cu, Ag, and Au) compounds termed coinage metalides on the basis of an intriguing Janus-type all-cis1,2,3,4,5,6-hexafluorocyclohexane (1) molecule. Under the large facial polarization of 1, the outermost ns(1) electrons of alkali metal atoms can be transferred to coinage metal atoms, forming diffuse excess electrons around them. Consequently, the resulting M+-1-Cu- and M+-1-Ag- compounds exhibit significantly large nonlinear optical (NLO) responses. In particular, these novel M+-1-M '(-) compounds exhibit much higher stability (larger VIEs and E-c values) than that of the corresponding M+center dot 1 center dot M '(-) (M, M ' = Li, Na, and K) alkalides. We hope this work could open up new possibilities for NLO material design by using coinage metal atoms as excess electron acceptors and, on the other hand, attract more experimental interest and efforts to synthesize such stable compounds in the laboratory.

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