Vilela, S.M.F.; Salcedo-Abraira, P.; Colinet, I.; Salles, F.; De Koning, M.C.; Joosen, M.J.A.; Serre, C.; Horcajada, P.
Nanometric MIL-125-NH2 Metal–Organic Framework as a Potential Nerve Agent Antidote Carrier. Nanomaterials 2017, 7, 321.
https://doi.org/10.3390/nano7100321
AMA Style
Vilela SMF, Salcedo-Abraira P, Colinet I, Salles F, De Koning MC, Joosen MJA, Serre C, Horcajada P.
Nanometric MIL-125-NH2 Metal–Organic Framework as a Potential Nerve Agent Antidote Carrier. Nanomaterials. 2017; 7(10):321.
https://doi.org/10.3390/nano7100321
Chicago/Turabian Style
Vilela, Sérgio M. F., Pablo Salcedo-Abraira, Isabelle Colinet, Fabrice Salles, Martijn C. De Koning, Marloes J. A. Joosen, Christian Serre, and Patricia Horcajada.
2017. "Nanometric MIL-125-NH2 Metal–Organic Framework as a Potential Nerve Agent Antidote Carrier" Nanomaterials 7, no. 10: 321.
https://doi.org/10.3390/nano7100321
APA Style
Vilela, S. M. F., Salcedo-Abraira, P., Colinet, I., Salles, F., De Koning, M. C., Joosen, M. J. A., Serre, C., & Horcajada, P.
(2017). Nanometric MIL-125-NH2 Metal–Organic Framework as a Potential Nerve Agent Antidote Carrier. Nanomaterials, 7(10), 321.
https://doi.org/10.3390/nano7100321