Hydrothermal-Assisted Synthesis and Stability of Multifunctional MXene Nanobipyramids: Structural, Chemical, and Optical Evolution


Journal article


Barkha Singh, Rohan Bahadur, Suditi Neekhra, Mayuri Gandhi, Rohit Srivastava
ACS Applied Materials \& Interfaces, vol. 13, 2021, pp. 3011-3023


Cite

Cite

APA   Click to copy
Singh, B., Bahadur, R., Neekhra, S., Gandhi, M., & Srivastava, R. (2021). Hydrothermal-Assisted Synthesis and Stability of Multifunctional MXene Nanobipyramids: Structural, Chemical, and Optical Evolution. ACS Applied Materials \&Amp; Interfaces, 13, 3011–3023. https://doi.org/10.1021/acsami.0c18712


Chicago/Turabian   Click to copy
Singh, Barkha, Rohan Bahadur, Suditi Neekhra, Mayuri Gandhi, and Rohit Srivastava. “Hydrothermal-Assisted Synthesis and Stability of Multifunctional MXene Nanobipyramids: Structural, Chemical, and Optical Evolution.” ACS Applied Materials \& Interfaces 13 (2021): 3011–3023.


MLA   Click to copy
Singh, Barkha, et al. “Hydrothermal-Assisted Synthesis and Stability of Multifunctional MXene Nanobipyramids: Structural, Chemical, and Optical Evolution.” ACS Applied Materials \&Amp; Interfaces, vol. 13, 2021, pp. 3011–23, doi:10.1021/acsami.0c18712.


BibTeX   Click to copy

@article{singh2021a,
  title = {Hydrothermal-Assisted Synthesis and Stability of Multifunctional MXene Nanobipyramids: Structural, Chemical, and Optical Evolution},
  year = {2021},
  journal = {ACS Applied Materials \& Interfaces},
  pages = {3011-3023},
  volume = {13},
  doi = {10.1021/acsami.0c18712},
  author = {Singh, Barkha and Bahadur, Rohan and Neekhra, Suditi and Gandhi, Mayuri and Srivastava, Rohit}
}

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