4.8 Article

Functional Two-Dimensional Coordination Polymeric Layer as a Charge Barrier in Li-S Batteries

Journal

ACS NANO
Volume 12, Issue 1, Pages 836-843

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/acsnano.7b08223

Keywords

two-dimensional materials; coordination polymers; lithium-sulfur battery; polysulfide; shuttling effect

Funding

  1. Competitive Research Grant (CRG) from Solar Center, King Abdullah University of Science and Technology (Saudi Arabia) [URF/1/2634-01]
  2. Center Competitive Funding (CCF) from Solar Center, King Abdullah University of Science and Technology (Saudi Arabia)
  3. Competitive Research Grant (CRG) from King Abdullah University of Science and Technology (Saudi Arabia) [URF/1/1723, URF/1/2570-01-01]

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Ultrathin two-dimensional (2D) polymeric layers are capable of separating gases and molecules based on the reported size exclusion mechanism. What is equally important but missing today is an exploration of the 2D layers with charge functionality, which enables applications using the charge exclusion principle. This work demonstrates a simple and scalable method of synthesizing a free-standing 2D coordination polymer Zn-2(benzimidazolate)(2)(OH)(2) at the air-water interface. The hydroxyl (OH) groups are stoichiometrically coordinated and implement electrostatic charges in the 2D structures, providing powerful functionality as a charge barrier. Electrochemical performance of the Li-S battery shows that the Zn-2(benzimidazolate)(2)(OH)(2) coordination polymer layers efficiently mitigate the polysulfide shuttling effects and largely enhance the battery capacity and cycle performance. The synthesis of the proposed coordination polymeric layers is simple, scalable, cost saving, and promising for practical use in batteries.

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