Ultralight carbon nanofoam from naphtalene-mediated hydrothermal sucrose carbonization

Mitchell ST, Frese N, Gölzhäuser A, Bowers A, Sattler K (2015)
Carbon 95: 434-441.

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Mitchell ST, Frese N, Gölzhäuser A, Bowers A, Sattler K. Ultralight carbon nanofoam from naphtalene-mediated hydrothermal sucrose carbonization. Carbon. 2015;95:434-441.
Mitchell, S. T., Frese, N., Gölzhäuser, A., Bowers, A., & Sattler, K. (2015). Ultralight carbon nanofoam from naphtalene-mediated hydrothermal sucrose carbonization. Carbon, 95, 434-441.
Mitchell, S. T., Frese, N., Gölzhäuser, A., Bowers, A., and Sattler, K. (2015). Ultralight carbon nanofoam from naphtalene-mediated hydrothermal sucrose carbonization. Carbon 95, 434-441.
Mitchell, S.T., et al., 2015. Ultralight carbon nanofoam from naphtalene-mediated hydrothermal sucrose carbonization. Carbon, 95, p 434-441.
S.T. Mitchell, et al., “Ultralight carbon nanofoam from naphtalene-mediated hydrothermal sucrose carbonization”, Carbon, vol. 95, 2015, pp. 434-441.
Mitchell, S.T., Frese, N., Gölzhäuser, A., Bowers, A., Sattler, K.: Ultralight carbon nanofoam from naphtalene-mediated hydrothermal sucrose carbonization. Carbon. 95, 434-441 (2015).
Mitchell, Shelby Taylor, Frese, Natalie, Gölzhäuser, Armin, Bowers, Amanda, and Sattler, Klaus. “Ultralight carbon nanofoam from naphtalene-mediated hydrothermal sucrose carbonization”. Carbon 95 (2015): 434-441.
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