Sustainable Nanotechnology. Группа авторов

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      64 64 Contado, C. (2015). Nanomaterials in consumer products: a challenging analytical problem. Frontiers in chemistry 3 (48): 1–20.

      65 65 Hansen, S.F., Baun, A., Michelson, E.S. et al. (2009). Nanomaterials in consumer products. In: Nanomaterials: Risks and Benefits (eds. I. Linkov and J. Steevens), 359–367. Dordrecht: Springer.

      66 66 Vance, M.E., Kuiken, T., Vejerano, E.P. et al. (2015). Nanotechnology in the real world: redeveloping the nanomaterial consumer products inventory. Beilstein Journal of Nanotechnology 6 (1): 1769–1780.

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      68 68 Wu, W. (2017). Inorganic nanomaterials for printed electronics: a review. Nanoscale 9 (22): 7342–7372.

      69 69 Moghaddam, H.K., Maraki, M.R., and Rajaei, A. (2020). Application of carbon nanotubes (CNT) on the computer science and electrical engineering: a review. International Journal of Reconfigurable and Embedded Systems 9 (1): 61–82.

      70 70 Tyagi, M. and Tyagi, D. (2014). Polymer nanocomposites and their applications in electronics industry. International Journal of Electronic and Electrical Engineering 7 (6): 603–608.

      71 71 Vargas‐Bernal, R., Herrera‐Pérez, G., and Tecpoyotl‐Torres, M. (2019). The impact of carbon nanotubes and graphene on electronics industry. In: Advanced Methodologies and Technologies in Digital Marketing and Entrepreneurship (ed. M. Khosrow‐Pour), 382–394. IGI Global.

      72 72 Anuhya, K.H. and Eunice, T.G. (2016). Potential impact of nanomaterials in information and communication technologies. Indian Journal of Research in Pharmacy and Biotechnology 4 (6): 267–270.

      73 73 Kardanmoghaddam, H., Maraki, M., and Rajaei, A. (2020). Graphene‐reinforced polymeric nanocomposites in computer and electronics industries. FactaUniversitatis, Series: Electronics and Energetics 33 (3): 351–378.

      74 74 Chen, X., Akinwande, D., Lee, K.J. et al. (2010). Fully integrated graphene and carbon nanotube interconnects for gigahertz high‐speed CMOS electronics. IEEE Transactions on Electron Devices 57 (11): 3137–3143.

      75 75 Ahn, E.C., Wong, H.S.P., and Pop, E. (2018). Carbon nanomaterials for non‐volatile memories. Nature Reviews Materials 3 (3): 1–15.

      76 76 Le Ferrand, H., Chabi, S., and Agarwala, S. (2020). 3D assembly of graphene nanomaterials for advanced electronics. Advanced Intelligent Systems 2 (5): 1–16.

      77 77 Thomas, S.P., Al‐Mutairi, E.M., and De, S.K. (2013). Impact of nanomaterials on health and environment. Arabian Journal for Science and Engineering 38 (3): 457–477.

      78 78 Wacker, M.G. (2014). Nanotherapeutics—product development along the “nanomaterial” discussion. Journal of Pharmaceutical Sciences 103 (3): 777–784.

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      80 80 Gopi, S., Amalraj, A., and Thomas, S. (2016). Effective drug delivery system of biopolymers based on nanomaterials and hydrogels—a review. Drug Desigining 5 (129): 2169–0138.

      81 81 Liang, X.J., Chen, C., Zhao, Y. et al. (2008). Biopharmaceutics and therapeutic potential of engineered nanomaterials. Current Drug Metabolism 9 (8): 697–709.

      82 82 Arepalli, S. and Moloney, P. (2015). Engineered nanomaterials in aerospace. MRS Bulletin 40 (10): 804–811.

      83 83 Rizakhanov, R.N., Polyanskiy, M.N., Malinovskaya, O.S., and Tsvetkova, E.V. (2012). CVD facility for the formation of carbon nanomaterials on a space station board. Fullerenes, Nanotubes and Carbon Nanostructures 20 (4–7): 482–486.

      84 84 Haynes, H. and Asmatulu, R. (2013). Nanotechnology safety in the aerospace industry. In: Nanotechnology Safety (ed. R. Asmatulu), 85–97. Elsevier.

      85 85 Levchenko, I., Xu, S., Teel, G. et al. (2018). Recent progress and perspectives of space electric propulsion systems based on smart nanomaterials. Nature Communications 9 (1): 1–19.

      86 86 Carpinteri, A. and Pugno, N. (2008). Bio‐inspired hierarchical nanomaterials for space applications. Journal of the British Interplanetary Society 61 (8): 290–294.

      87 87 Novikov, L.S. and Voronina, E.N. (2017). Potential space applications of nanomaterials. In: Protection of Materials and Structures from the Space Environment (ed. J. Kleiman), 139–147. Cham: Springer.

      88 88 Nilsson, M., Griggs, D., and Visbeck, M. (2016). Policy: map the interactions between sustainable development goals. Nature 534 (7607): 320–322.

      89 89 Aithal, P.S. and Aithal, S. (2015). Ideal technology concept & its realization opportunity using nanotechnology. International Journal of Application or Innovation in Engineering & Management (IJAIEM) 4 (2): 153–164.

      90 90 Aithal, P.S. and Aithal, S. (2018). Nanotechnology based innovations and human life comfortability –are we marching towards immortality? International Journal of Applied Engineering and Management Letters (IJAEML) 2 (2): 71–86.

      91 91 Aithal, P.S. and Madhushree, L.M. (2019). Emerging trends in ICCT as universal technology for strategic development of industry sectors. In: IT and Computing for All the Domains and Professionals: The Emergence of Computer and Information Sciences (eds. P.K. Paul, A. Bhuimali, K.S. Tiwary and P.S. Aithal), 1–26. New Delhi: New Delhi Publishers, ISBN: 978‐93‐88879‐66‐8.

      92 92 Aithal, P.S. and Aithal, S. (2016). Nanotechnology innovations and commercialization – opportunities, challenges & reasons for delay. Proceedings of National Conference on Changing Perspectives of Management, IT, and Social Sciences in Contemporary Environment 14: 1–12, ISBN 978‐93‐5265‐6523.

      93 93 Sridhar Acharya, P. and Aithal, P.S. (2015). Innovations in effective management of energy using green technology. International Journal of Conceptions on Management and Social Sciences 3 (2): 18–22.

      94 94 Aithal, P.S. and Jeevan, P. (2016). Strategic rethinking of management education: green MBA model. International Journal of Management, IT and Engineering (IJMIE) 6 (1): 55–73.

      95 95 Aithal, P.S. and Rao, P. (2016). How service industries can transform themselves into green business industries. International Journal of Management Sciences and Business Research (IJMSBR) 5 (4): 150–158.

      96 96 Han, W. and Liu, L.C. (2009). Discussion on green education in universities. Journal of Daqing Normal University 1 (1): 39–45.

      97 97 Wu, G. (2011). A new concept of green education: the cultivation model for successful and practical talents. International Forum of Teaching & Studies 7 (1): 45–48.

      98 98 Aithal, P.S. (2015). Concept of ideal business & its realization using e‐business model. International Journal of Science and Research (IJSR) 4 (3): 1267–1274.

      99 99 Aithal, P.S. (2015). Mobile business as an optimum model for ideal business. International Journal of Management, IT and Engineering (IJMIE) 5 (7): 146–159.

      100 100 Aithal, P.S. and Aithal, S. (2015). An innovative education model to realize ideal education system. International Journal of Scientific Research and

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