Kumari Nisha, Raja Karuppannan
Department of Seed Science and Technology, Seed Centre, Tamil Nadu Agricultural University, Coimbatore, Tamil Nadu, India.
Seed Centre, Tamil Nadu Agricultural University, Coimbatore, Tamil Nadu, India.
J Fluoresc. 2025 Sep 1. doi: 10.1007/s10895-025-04508-3.
The depletion of arable land, water scarcity, frequent climate fluctuations, the onset of the COVID-19 pandemic, inefficiencies in pesticide usage, and the Ukraine-Russia conflict, which disrupted global supplies of fertilisers, have collectively heightened crop strain and reduced agricultural productivity. In this regard, to overcome these agriculture problems, adopting a sustainable approach for agricultural production plays a significant role in ensuring global food security. Carbon dots, a novel member of the carbon-based nanomaterial's family with extraordinary properties such as chemical stability, water solubility, low cytotoxicity, small size, biocompatibility, and photoluminescence, have recently attracted attention in agriculture sectors. The abundant hydrophilic functional groups on the surface of carbon dots, together with their small size and structural features, provide several advantages, such as increased crop growth, improved photosynthesis, stress tolerance, and accelerated seed germination. Carbon dots have also shown impressive advantages in nutrient uptake, and acting as sensors for pesticides, herbicides, and nutrients. Furthermore, carbon dots facilitate precise gene delivery into plant cells creating opportunities for genetic improvement and also enhance post-harvest preservation. This review highlights the potential of carbon dots in the field of agriculture, covering their classification, source of synthesis, and their diverse applications in the field of agriculture. While their potential is vast, further research is essential to address toxicological concerns and environmental impacts to ensure their safe and effective integration into agricultural system. Lastly, the limitations and future perspectives are outlined, which need to be focused on promoting the potential application of carbon dots in the agricultural sector.
耕地减少、水资源短缺、气候频繁波动、新冠疫情爆发、农药使用效率低下以及俄乌冲突导致全球肥料供应中断,这些因素共同加剧了作物压力,降低了农业生产力。在这方面,为克服这些农业问题,采用可持续的农业生产方式对确保全球粮食安全具有重要作用。碳点是碳基纳米材料家族的新成员,具有化学稳定性、水溶性、低细胞毒性、尺寸小、生物相容性和光致发光等非凡特性,最近在农业领域受到关注。碳点表面丰富的亲水性官能团,加上其小尺寸和结构特点,具有多种优势,如促进作物生长、改善光合作用、增强抗逆性以及加速种子萌发。碳点在养分吸收方面也显示出显著优势,还可作为农药、除草剂和养分的传感器。此外,碳点有助于将基因精确导入植物细胞从而为基因改良创造机会,同时也能增强收获后的保鲜效果。本综述重点介绍了碳点在农业领域的潜力,涵盖其分类、合成来源以及在农业领域的多种应用。尽管其潜力巨大,但进一步研究以解决毒理学问题和环境影响对于确保其安全有效地融入农业系统至关重要。最后,概述了局限性和未来展望,这需要重点关注以促进碳点在农业领域的潜在应用。