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Dopamine-based copper-free click kit for efficient surface functionalization

Journal articles  - Journal Article
Zheng, J; Chen, Y; Karim, A; Becker, ML
Published in: ACS Macro Letters
October 21, 2014

(Chemical Equation Presented). Strain-promoted azide-alkyne cycloaddition reactions are combined with a dopamine functional species to generate a highly efficient method for surface modification. The resulting conjugate containing 4-dibenzocyclooctynol (DIBO) and dopamine results in a versatile surface labeling technology that can replicate patterns generated from photolithography and microcontact printing techniques.

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Published In

ACS Macro Letters

DOI

EISSN

2161-1653

Publication Date

October 21, 2014

Volume

3

Issue

10

Start / End Page

1084 / 1087

Related Subject Headings

  • 3406 Physical chemistry
  • 3403 Macromolecular and materials chemistry
 

Citation

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Zheng, J., Chen, Y., Karim, A., & Becker, M. L. (2014). Dopamine-based copper-free click kit for efficient surface functionalization. ACS Macro Letters, 3(10), 1084–1087. https://doi.org/10.1021/mz5005162
Zheng, J., Y. Chen, A. Karim, and M. L. Becker. “Dopamine-based copper-free click kit for efficient surface functionalization.” ACS Macro Letters 3, no. 10 (October 21, 2014): 1084–87. https://doi.org/10.1021/mz5005162.
Zheng J, Chen Y, Karim A, Becker ML. Dopamine-based copper-free click kit for efficient surface functionalization. ACS Macro Letters. 2014 Oct 21;3(10):1084–7.
Zheng, J., et al. “Dopamine-based copper-free click kit for efficient surface functionalization.” ACS Macro Letters, vol. 3, no. 10, Oct. 2014, pp. 1084–87. Scopus, doi:10.1021/mz5005162.
Zheng J, Chen Y, Karim A, Becker ML. Dopamine-based copper-free click kit for efficient surface functionalization. ACS Macro Letters. 2014 Oct 21;3(10):1084–1087.
Journal cover image

Published In

ACS Macro Letters

DOI

EISSN

2161-1653

Publication Date

October 21, 2014

Volume

3

Issue

10

Start / End Page

1084 / 1087

Related Subject Headings

  • 3406 Physical chemistry
  • 3403 Macromolecular and materials chemistry