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Yu, S., He, C., Ding, J., Cheng, Y., Song, W., Zhuang, X., et al. (2013). pH and reduction dual
responsive polyurethane triblock copolymers for efficient intracellular drug delivery. Soft
Matter, 9(9), 2637–2645. https://doi.org/10.1039/c2sm27616j.
Zaporotskova, I. V., Boroznina, N. P., Parkhomenko, Y. N., & Kozhitov, L. V. (2016). Carbon
nanotubes: Sensor properties. A review. Modern Electronic Materials, 2(4), 95–105. https://
doi.org/10.1016/j.moem.2017.02.002.
Zeng, Z., Chen, M., Jin, H., Li, W., Xue, X., Zhou, L., Pei, Y., Zhang, H., & Zhang, Z. (2016).
Thin and flexible multi-walled carbon nanotube/waterborne polyurethane composites with
high-performance electromagnetic interference shielding. Carbon, 96, 768–777. https://doi.
org/10.1016/j.carbon.2015.10.004.
Zhang, T., Xi, K., Yu, X., Gu, M., Guo, S., Gu, B., & Wang, H. (2003). Synthesis, properties
of fullerene-containing polyurethane–urea and its optical limiting absorption. Polymer, 44(9),
2647–2654. https://doi.org/10.1016/s0032-3861(03)00173-3.
Zhao, Q., Qi, H. J., & Xie, T. (2015). Recent progress in shape memory polymer: New behavior, enabling materials, and mechanistic understanding. Progress in Polymer Science, 49-50,
79–120. https://doi.org/10.1016/j.progpolymsci.2015.04.001.
Zhou, L., Yu, L., Ding, M., Li, J., Tan, H., Wang, Z., & Fu, Q. (2011). Synthesis and characterization of pH-sensitive biodegradable polyurethane for potential drug delivery applications.
Macromolecules, 44(4), 857–864. https://doi.org/10.1021/ma102346a.
Zou, Q., Wang, M., & Li, Y. (2010). Analysis of the nanodiamond particle fabricated
by detonation. Journal of Experimental Nanoscience, 5(4), 319–328. https://doi.
org/10.1080/17458080903531021.
4 Carbon Nanoparticle-Loaded Shape Memory Polyurethanes: Design…
Yu, S., He, C., Ding, J., Cheng, Y., Song, W., Zhuang, X., et al. (2013). pH and reduction dual
responsive polyurethane triblock copolymers for efficient intracellular drug delivery. Soft
Matter, 9(9), 2637–2645. https://doi.org/10.1039/c2sm27616j.
Zaporotskova, I. V., Boroznina, N. P., Parkhomenko, Y. N., & Kozhitov, L. V. (2016). Carbon
nanotubes: Sensor properties. A review. Modern Electronic Materials, 2(4), 95–105. https://
doi.org/10.1016/j.moem.2017.02.002.
Zeng, Z., Chen, M., Jin, H., Li, W., Xue, X., Zhou, L., Pei, Y., Zhang, H., & Zhang, Z. (2016).
Thin and flexible multi-walled carbon nanotube/waterborne polyurethane composites with
high-performance electromagnetic interference shielding. Carbon, 96, 768–777. https://doi.
org/10.1016/j.carbon.2015.10.004.
Zhang, T., Xi, K., Yu, X., Gu, M., Guo, S., Gu, B., & Wang, H. (2003). Synthesis, properties
of fullerene-containing polyurethane–urea and its optical limiting absorption. Polymer, 44(9),
2647–2654. https://doi.org/10.1016/s0032-3861(03)00173-3.
Zhao, Q., Qi, H. J., & Xie, T. (2015). Recent progress in shape memory polymer: New behavior, enabling materials, and mechanistic understanding. Progress in Polymer Science, 49-50,
79–120. https://doi.org/10.1016/j.progpolymsci.2015.04.001.
Zhou, L., Yu, L., Ding, M., Li, J., Tan, H., Wang, Z., & Fu, Q. (2011). Synthesis and characterization of pH-sensitive biodegradable polyurethane for potential drug delivery applications.
Macromolecules, 44(4), 857–864. https://doi.org/10.1021/ma102346a.
Zou, Q., Wang, M., & Li, Y. (2010). Analysis of the nanodiamond particle fabricated
by detonation. Journal of Experimental Nanoscience, 5(4), 319–328. https://doi.
org/10.1080/17458080903531021.
4 Carbon Nanoparticle-Loaded Shape Memory Polyurethanes: Design…
