Nanomaterials beyond Graphene for Biomedical Applications

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J. Funct. Biomater. 2022, 13, 27 31 of 36 References 1. Gao, P.; Xiao, Y.; Li, L.; Li, W.; Tao, W. Biomedical applications of 2D monoelemental materials formed by group va and via: A concise review. J. Nanobiotechnol. 2021, 19, 1–23. 2. Mei, X.; Hu, T.; Wang, Y.; Weng, X.; Liang, R.; Wei, M. Recent advancements in two‐dimensional nanomaterials for drug delivery. Wiley Interdiscip. Rev. Nanomed. Nanobiotechnol. 2020, 12, e1596. 3. Rao, C.E.E.; Sood, A.E.; Subrahmanyam, K.E.; Govindaraj, A. Graphene: The new two‐dimensional nanomaterial. Angew. Chem. Int. Ed. 2009, 48, 7752–7777. 4. Novoselov, K.S.; Geim, A.K.; Morozov, S.V.; Jiang, D.E.; Zhang, Y.; Dubonos, S.V.; Grigorieva, I.V.; Firsov, A.A. Electric field effect in atomically thin carbon films. Science 2004, 306, 666–669. 5. Geim, A.K.; Novoselov, K.S. The rise of graphene. In Nanoscience and Technology: A Collection of Reviews from Nature Journals; World Scientific: Singapore, 2010; pp. 11–19. 6. Chung, C.; Kim, Y.-K.; Shin, D.; Ryoo, S.-R.; Hong, B.H.; Min, D.-H. Biomedical applications of graphene and graphene oxide. Acc. Chem. Res.2013, 46, 2211–2224. 7. Carrow, J.K.; Singh, K.A.; Jaiswal, M.K.; Ramirez, A.; Lokhande, G.; Yeh, A.T.; Sarkar, T.R.; Singh, I.; Gaharwar, A.K. Photothermal modulation of human stem cells using light-responsive 2D nanomaterials. Proc. Natl. Acad. Sci. USA 2020, 117, 13329–13338. 8. Hu, T.; Mei, X.; Wang, Y.; Weng, X.; Liang, R.; Wei, M. Two-dimensional nanomaterials: Fascinating materials in biomedical field. Sci. Bull. 2019, 64, 1707–1727. 9. Bolotsky, A.; Butler, D.; Dong, C.; Gerace, K.; Glavin, N.R.; Muratore, C.; Robinson, J.A.; Ebrahimi, A. Two-dimensional materials in biosensing and healthcare: From in vitro diagnostics to optogenetics and beyond. ACS Nano 2019, 13, 9781–9810. 10. Tao, W.; Kong, N.; Ji, X.; Zhang, Y.; Sharma, A.; Ouyang, J.; Qi, B.; Wang, J.; Xie, N.; Kang, C. Emerging two-dimensional monoelemental materials (Xenes) for biomedical applications. Chem. Soc. Rev. 2019, 48, 2891–2912. 11. Li, D.; Liu, T.; Yu, X.; Wu, D.; Su, Z. Fabrication of graphene–biomacromolecule hybrid materials for tissue engineering application. Polym. Chem. 2017, 8, 4309–4321. 12. Zhang, J.; Chen, H.; Zhao, M.; Liu, G.; Wu, J. 2D nanomaterials for tissue engineering application. Nano Res. 2020, 13, 2019–2034. 13. Yao, Y.; Lan, L.; Liu, X.; Ying, Y.; Ping, J. Spontaneous growth and regulation of noble metal nanoparticles on flexible biomimetic MXene paper for bioelectronics. Biosens. Bioelectron. 2020, 148, 111799. 14. Ashkarran, A.A.; Mohammadi, B. ZnO nanoparticles decorated on graphene sheets through liquid arc discharge approach with enhanced photocatalytic performance under visible-light. Appl. Surf. Sci. 2015, 342, 112–119. https://doi.org/10.1016/j.apsusc.2015.03.030. 15. Daemi, S.; Ashkarran, A.A.; Bahari, A.; Ghasemi, S. Gold nanocages decorated biocompatible amine functionalized graphene as an efficient dopamine sensor platform. J. Colloid Interface Sci. 2017, 494, 290–299. 16. Daemi, S.; Ashkarran, A.A.; Bahari, A.; Ghasemi, S. Fabrication of a gold nanocage/graphene nanoscale platform for electrocatalytic detection of hydrazine. Sens. Actuators B Chem. 2017, 245, 55–65. 17. Liu, S.; Pan, X.; Liu, H. Two-dimensional nanomaterials for photothermal therapy. Angew. Chem. 2020, 132, 5943–5953. 18. Qian, X.; Gu, Z.; Chen, Y. Two-dimensional black phosphorus nanosheets for theranostic nanomedicine. Mater. Horiz. 2017, 4, 800–816. 19. Chimene, D.; Alge, D.L.; Gaharwar, A.K. Two-dimensional nanomaterials for biomedical applications: Emerging trends and future prospects. Adv. Mater. 2015, 27, 7261–7284. 20. Wu, X.; Jiang, X.; Fan, T.; Zheng, Z.; Liu, Z.; Chen, Y.; Cao, L.; Xie, Z.; Zhang, D.; Zhao, J. Recent advances in photodynamic therapy based on emerging two-dimensional layered nanomaterials. Nano Res. 2020, 13, 1485–1508. 21. Banerjee, A.N. Graphene and its derivatives as biomedical materials: Future prospects and challenges. Interface Focus 2018, 8, 20170056. 22. Parvez, K. Two-dimensional nanomaterials: Crystal structure and synthesis. In Biomedical Applications of Graphene and 2D Nanomaterials; Elsevier: Amsterdam, The Netherlands, 2019; pp. 1–25. 23. Nicolosi, V.; Chhowalla, M.; Kanatzidis, M.G.; Strano, M.S.; Coleman, J.N. Liquid exfoliation of layered materials. Science 2013, 340, 1226419. 24. Zhang, X.; Teng, S.Y.; Loy, A.C.M.; How, B.S.; Leong, W.D.; Tao, X. Transition metal dichalcogenides for the application of pollution reduction: A review. Nanomaterials 2020, 10, 1012. 25. Wang, Y.-H.; Huang, K.-J.; Wu, X. Recent advances in transition-metal dichalcogenides based electrochemical biosensors: A review. Biosens. Bioelectron. 2017, 97, 305–316. 26. Iqbal, M.; Elahi, E.; Amin, A.; Hussain, G.; Aftab, S. Chemical doping of transition metal dichalcogenides (TMDCs) based field effect transistors: A review. Superlattices Microstruct. 2020, 137, 106350. 27. Lewis, E.A.; Brent, J.R.; Derby, B.; Haigh, S.J.; Lewis, D.J. Solution processing of two-dimensional black phosphorus. Chem. Commun. 2017, 53, 1445–1458. 28. Yi, Y.; Yu, X.-F.; Zhou, W.; Wang, J.; Chu, P.K. Two-dimensional black phosphorus: Synthesis, modification, properties, and applications. Mater. Sci. Eng. R: Rep. 2017, 120, 1–33. 29. Mu, X.; Wang, J.; Sun, M. Two-dimensional black phosphorus: Physical properties and applications. Mater. Today Phys. 2019, 8, 92–111.

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