4.7 Article

Preparation of ultra-thin sandwich Cu-Cu/CNTs-Cu composite foil with high tensile strength by electrodeposition

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出版社

ELSEVIER SCIENCE SA
DOI: 10.1016/j.jelechem.2022.116495

关键词

Ultra-thin; Sandwich; Cu/CNTs composite foil; High tensile strength

资金

  1. Natural Science Foundation of Jiangxi Province [20202ACB20200]
  2. Ganzhou Key Research & Development projects [[2019] 60]
  3. Jiangxi Provincial Key Laboratory of Functional Molecular Materials Chemistry [20212BCD42018]

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In this experiment, CuCu/CNTs-Cu composite copper foil with a micro-nano organizational structure and excellent mechanical properties was prepared by co-deposition of CNTs and Cu2+.
In this experiment, CNTs were co-deposited with Cu2+ in the acid electrolyte by acidizing sulfuric and nitric acid and protonating cationic surfactant poly diallyldimethylammonium chloride (PDDA). Subsequently, CuCu/CNTs-Cu composite copper foil (1) with a sandwich thickness of 8 mu m was prepared by combining additives of 3-mercapto-1-propanesulfonate (MPS) and Cl-. The results show that the resistivity of the composite foil is 1.89 x 10(-8) omega middotm, which increased only 2%. The tensile strength sigma is 582 MPa, the elongation epsilon is 3.27%, and the elastic modulus and hardness of the nano-indentation test are 97.5 GPa and 2.38 GPa respectively. These are due to the uniform distribution of CNTs as enhanced phases in the crystal, and importantly, nano twins appear in size smaller than 10 nm, thereby constructing a micro-nano organizational structure and greatly improving the mechanical properties of the composite foil. In addition, the main peak of XRD is shifted from (111) to (2 2 0) crystal plane, which shows reduced stress in grains, effectively inhibits the phenomenon of selfannealing, and ensures long-term stability of copper foil microstructure.

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