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Two-Dimensional-Based Hybrid Materials for Agriculture System

  • Smruti Ranjan Padhan,
  • Pratikshya Mishra,
  • Kaushik Kumar Panigrahi,
  • Ayesha Mohanty

摘要

The integration of two-dimensional (2D) materials in agriculture holds tremendous potential for revolutionizing farming practices and promoting sustainable and efficient agricultural systems. The potential benefits of these materials in agriculture are diverse and impactful. These materials offer advantages such as precise nutrient delivery, improved crop growth and productivity, soil remediation and pollution control, enhanced pesticide and fertilizer efficiency, water management, and irrigation. By leveraging the unique properties and functionalities of 2D materials and combining them with other materials, we can address key agricultural challenges and endorse resource efficiency. Continued research and development in the field of agriculture are crucial to unlocking their full potential. Ongoing efforts should focus on improving material synthesis and fabrication techniques, optimizing performance, scalability, and cost-effectiveness, and assessing long-term efficacy and safety. Collaboration and interdisciplinary research play a vital role in fostering innovation, knowledge exchange, and practical application in real-world agricultural settings. The insinuations of these materials for sustainable and efficient agricultural practices are momentous. These materials contribute to food security, water conservation, and climate resilience. They align with sustainable development goals, including zero hunger, clean water and sanitation, sustainable cities and communities, responsible consumption and production, and climate action. Addressing key agricultural challenges can pave the way for a more sustainable, resilient, and food-secure future. Future directions and potential breakthroughs in the field of hybrid materials in agriculture include the development of multifunctional materials, integration with the Internet of Things (IoT) technology, collaboration, and interdisciplinary research, and the establishment of supportive policies and regulatory frameworks. These improvements will further enhance these materials’ performance, functionality, and practical implementation in agriculture. Hence, the integration of these hybrid materials in agriculture offers immense opportunities for transforming farming practices and achieving sustainable and efficient agricultural systems. The recap of potential benefits, the importance of continued research and development, and the implications for sustainable agriculture highlight the significance of them in addressing key agricultural challenges and promoting resource efficiency. With ongoing advancements, 2D-based hybrid materials have the potential to revolutionize the agricultural sector and contribute to a more sustainable and food-secure future.