Diamond-Like Carbon Nanofoam from Low-Temperature Hydrothermal Carbonization of a Sucrose/Naphthalene Precursor Solution

Frese N, Taylor Mitchell S, Bowers A, Gölzhäuser A, Sattler K (2017)
C 3(3): 23.

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Frese N, Taylor Mitchell S, Bowers A, Gölzhäuser A, Sattler K. Diamond-Like Carbon Nanofoam from Low-Temperature Hydrothermal Carbonization of a Sucrose/Naphthalene Precursor Solution. C. 2017;3(3): 23.
Frese, N., Taylor Mitchell, S., Bowers, A., Gölzhäuser, A., & Sattler, K. (2017). Diamond-Like Carbon Nanofoam from Low-Temperature Hydrothermal Carbonization of a Sucrose/Naphthalene Precursor Solution. C, 3(3), 23. doi:10.3390/c3030023
Frese, N., Taylor Mitchell, S., Bowers, A., Gölzhäuser, A., and Sattler, K. (2017). Diamond-Like Carbon Nanofoam from Low-Temperature Hydrothermal Carbonization of a Sucrose/Naphthalene Precursor Solution. C 3:23.
Frese, N., et al., 2017. Diamond-Like Carbon Nanofoam from Low-Temperature Hydrothermal Carbonization of a Sucrose/Naphthalene Precursor Solution. C, 3(3): 23.
N. Frese, et al., “Diamond-Like Carbon Nanofoam from Low-Temperature Hydrothermal Carbonization of a Sucrose/Naphthalene Precursor Solution”, C, vol. 3, 2017, : 23.
Frese, N., Taylor Mitchell, S., Bowers, A., Gölzhäuser, A., Sattler, K.: Diamond-Like Carbon Nanofoam from Low-Temperature Hydrothermal Carbonization of a Sucrose/Naphthalene Precursor Solution. C. 3, : 23 (2017).
Frese, Natalie, Taylor Mitchell, Shelby, Bowers, Amanda, Gölzhäuser, Armin, and Sattler, Klaus. “Diamond-Like Carbon Nanofoam from Low-Temperature Hydrothermal Carbonization of a Sucrose/Naphthalene Precursor Solution”. C 3.3 (2017): 23.
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