Recent advances in stimuli-response mechanisms of nano-enabled controlled-release fertilizers and pesticides

Meimei Shen, Songlin Liu, Chuanjia Jiang, Tong Zhang, Wei Chen
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引用次数: 1

Abstract

Nanotechnology-enabled fertilizers and pesticides, especially those capable of releasing plant nutrients or pesticide active ingredients (AIs) in a controlled manner, can effectively enhance crop nutrition and protection while minimizing the environmental impacts of agricultural activities. Herein, we review the fundamentals and recent advances in nanofertilizers and nanopesticides with controlled-release properties, enabled by nanocarriers responsive to environmental and biological stimuli, including pH change, temperature, light, redox conditions, and the presence of enzymes. For pH-responsive nanocarriers, pH change can induce structural changes or degradation of the nanocarriers or cleave the bonding between nutrients/pesticide AIs and the nanocarriers. Similarly, temperature response typically involves structural changes in nanocarriers, and higher temperatures can accelerate the release by diffusion promoting or bond breaking. Photothermal materials enable responses to infrared light, and photolabile moieties (e.g., o-nitrobenzyl and azobenzene) are required for achieving ultraviolet light responses. Redox-responsive nanocarriers contain disulfide bonds or ferric iron, whereas enzyme-responsive nanocarriers typically contain the enzyme’s substrate as a building block. For fabricating nanofertilizers, pH-responsive nanocarriers have been well explored, but only a few studies have reported temperature- and enzyme-responsive nanocarriers. In comparison, there have been more reports on nanopesticides, which are responsive to a range of stimuli, including many with dual- or triple-responsiveness. Nano-enabled controlled-release fertilizers and pesticides show tremendous potential for enhancing the utilization efficiency of nutrients and pesticide AIs. However, to expand their practical applications, future research should focus on optimizing their performance under realistic conditions, lowering costs, and addressing regulatory and public concerns over environmental and safety risks.

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纳米控释肥料和农药刺激-反应机制研究进展
利用纳米技术的肥料和农药,特别是那些能够以可控的方式释放植物营养素或农药活性成分的肥料和杀虫剂,可以有效地增强作物营养和保护,同时最大限度地减少农业活动对环境的影响。在此,我们回顾了具有控释特性的纳米肥料和纳米农药的基本原理和最新进展,这些特性是由对环境和生物刺激(包括pH变化、温度、光照、氧化还原条件和酶的存在)做出反应的纳米载体实现的。对于pH响应性纳米载体,pH变化可诱导纳米载体的结构变化或降解,或切断营养物/农药AI与纳米载体之间的结合。类似地,温度响应通常涉及纳米载体的结构变化,更高的温度可以通过促进扩散或破坏键来加速释放。光热材料能够对红外光做出响应,并且实现紫外光响应需要光不稳定部分(例如,邻硝基苄基和偶氮苯)。氧化还原反应纳米载体含有二硫键或三价铁,而酶反应纳米载体通常含有酶的底物作为构建块。对于制造纳米肥料,pH响应性纳米载体已经得到了很好的探索,但只有少数研究报道了温度和酶响应性纳米载流子。相比之下,关于纳米农药的报道更多,纳米农药对一系列刺激有反应,包括许多具有双重或三重反应的刺激。纳米控释肥料和农药在提高营养物质和农药AI的利用效率方面显示出巨大的潜力。然而,为了扩大其实际应用,未来的研究应侧重于在现实条件下优化其性能,降低成本,并解决监管和公众对环境和安全风险的担忧。
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来源期刊
Eco-Environment & Health
Eco-Environment & Health 环境科学与生态学-生态、环境与健康
CiteScore
11.00
自引率
0.00%
发文量
18
审稿时长
22 days
期刊介绍: Eco-Environment & Health (EEH) is an international and multidisciplinary peer-reviewed journal designed for publications on the frontiers of the ecology, environment and health as well as their related disciplines. EEH focuses on the concept of “One Health” to promote green and sustainable development, dealing with the interactions among ecology, environment and health, and the underlying mechanisms and interventions. Our mission is to be one of the most important flagship journals in the field of environmental health. Scopes EEH covers a variety of research areas, including but not limited to ecology and biodiversity conservation, environmental behaviors and bioprocesses of emerging contaminants, human exposure and health effects, and evaluation, management and regulation of environmental risks. The key topics of EEH include: 1) Ecology and Biodiversity Conservation Biodiversity Ecological restoration Ecological safety Protected area 2) Environmental and Biological Fate of Emerging Contaminants Environmental behaviors Environmental processes Environmental microbiology 3) Human Exposure and Health Effects Environmental toxicology Environmental epidemiology Environmental health risk Food safety 4) Evaluation, Management and Regulation of Environmental Risks Chemical safety Environmental policy Health policy Health economics Environmental remediation
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