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Advanced Materials in Driving Innovation and Advancement in Industry

Mamta Yadav

Abstract


Advanced materials have become increasingly important in driving innovation and advancement across multiple industries. These materials offer unique properties that can improve the performance, durability, and functionality of various products, leading to new opportunities for growth and competitiveness. In this paper, we examine the role of advanced materials in different industries, including aerospace, energy, healthcare, electronics, and transportation. We explore some of the latest developments in materials science and engineering, such as nanotechnology, biocompatible materials, and smart materials, and how they are being applied to create new products and services. The development and commercialization of advanced materials, such as high costs, regulatory hurdles, and limited scalability. Finally, we discuss the outlook for advanced materials and their potential to transform industries and address some of the world's most pressing challenges, such as climate change, energy security, and healthcare access.

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References


Tiwari A. Advanced materials research and innovation priorities for accomplishing the sustainable development goals. Advanced Materials Letters. 2021 Jun 1;12(6):1-6.

Chen X, Zhu X, He S, Hu L, Ren ZJ. Advanced nanowood materials for the water–energy nexus. Advanced Materials. 2021 Jul;33(28):2001240.

Khan Y, Ostfeld AE, Lochner CM, Pierre A, Arias AC. Monitoring of vital signs with flexible and wearable medical devices. Advanced materials. 2016 Jun;28(22):4373-95.

Nelson K, Retsina T, Iakovlev M, van Heiningen A, Deng Y, Shatkin JA, Mulyadi A. American process: production of low cost nanocellulose for renewable, advanced materials applications. Materials research for manufacturing: An industrial perspective of turning materials into new

products. 2016:267-302.

Reynolds EB, Uygun Y. Strengthening advanced manufacturing innovation ecosystems: The case of Massachusetts. Technological Forecasting and Social Change. 2018 Nov 1;136:178-91.

Reynolds EB, Uygun Y. Strengthening advanced manufacturing innovation ecosystems: The case of Massachusetts. Technological Forecasting and Social Change. 2018 Nov 1;136:178-91.

Luo Y, Wang M, Wan C, Cai P, Loh XJ, Chen X. Devising Materials Manufacturing Toward Lab‐to‐Fab Translation of Flexible Electronics. Advanced Materials. 2020 Sep;32(37):2001903.

Barry E, Burns R, Chen W, De Hoe GX, De Oca JM, De Pablo JJ, Dombrowski J, Elam JW, Felts AM, Galli G, Hack J. Advanced materials for energy-water systems: the central role of water/solid interfaces in adsorption, reactivity, and transport. Chemical Reviews. 2021 Jul 2;121(15):9450-501.

Yamamoto H. Driving Innovations, an industry case to enhance manufacturing competitiveness. Manufacturing Systems and Technologies for the New Frontier. 2008 May 14:3-6.

Fortunato E, Barquinha P, Martins R. Oxide semiconductor thin‐film transistors: a review of recent advances. Advanced materials. 2012 Jun 12;24(22):2945-86.

Maine E, Lubik S, Garnsey E. Value creation strategies for science-based business: A study of materials ventures. Innovation. 2013 Mar 1;15(1):35-51.

Gillpatrick T, Blunck E, Boğa S. Understanding the role of consumer behavior in forecasting to impact of industry 4.0 and the wave of digital disruption driving innovation in retailing. In DIEM: Dubrovnik International Economic Meeting 2019 Nov 28 (Vol. 4, No. 1, pp. 165-176). Sveučilište u Dubrovniku.

Tan YJ, Susanto GJ, Anwar Ali HP, Tee BC. Progress and Roadmap for Intelligent Self‐Healing Materials in Autonomous Robotics. Advanced Materials. 2021 May;33(19):2002800.

Doyle-Kent M, Kopacek P. Industry 5.0: Is the manufacturing industry on the cusp of a new revolution? In Proceedings of the International Symposium for Production Research 2019 2020 (pp. 432-441). Springer International Publishing.

Epps RW, Bowen MS, Volk AA, Abdel‐Latif K, Han S, Reyes KG, Amassian A, Abolhasani M. Artificial chemist: an autonomous quantum dot synthesis bot. Advanced Materials. 2020

Baykara T. From the classical scheme to Asmart/functional materials system: a generic transformation of advanced materials technologies. Procedia-Social and Behavioral Sciences. 2015 May 11;181:79-88.

Dou L, You J, Hong Z, Xu Z, Li G, Street RA, Yang Y. 25th anniversary article: a decade of organic/polymeric photovoltaic research. Advanced materials. 2013 Dec;25(46):6642-71.

Gutfleisch O, Willard MA, Brück E, Chen CH, Sankar SG, Liu JP. Magnetic materials and devices for the 21st century: stronger, lighter, and more energy efficient. Advanced materials. 2011 Feb 15;23(7):821-42.

Li L, Zhang Q, He B, Pan R, Wang Z, Chen M, Wang Z, Yin K, Yao Y, Wei L, Sun L. Advanced multifunctional aqueous rechargeable batteries design: from materials and devices to systems.

Advanced Materials. 2022 Feb;34(5):2104327.

Xin Y, Yu K, Zhang L, Yang Y, Yuan H, Li H, Wang L, Zeng J. Copper‐Based Plasmonic Catalysis: Recent Advances and Future Perspectives. Advanced Materials. 2021 Aug;33(32):2008145


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