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June 3, 2026Particle & Particle Systems Characterization0 citationsOpen Access

Polycaprolactone‐Based Bicontinuous Structures Stabilized by Nanoparticles as Selective Pesticide Delivery Systems in Agriculture

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FPFabio PizzettiPolitecnico di MilanoMAMaria Camila Barrera ArevaloPolitecnico di MilanoFCF. CastiglionePolitecnico di Milano

Key Points

  • The study aims to develop a biodegradable pesticide delivery system that minimizes environmental impact.
  • Evaluated atrazine release kinetics in celite and natural soil.
  • Conducted plant-growth assays with atrazine-loaded bicontinuous structures.
  • Atrazine-loaded bicontinuous structures reduced Brassica sp. growth significantly.
  • No measurable effect of the delivery system was observed on Zea mays under tested conditions.

Abstract

ABSTRACT Pesticides play a crucial role in improving agricultural productivity and, consequently, global food security. However, conventional pesticide delivery systems typically rely on organic solvents and/or surfactants to solubilize highly hydrophobic active ingredients, leading to significant environmental concerns. In this work, we present a degradable bicontinuous delivery system for pesticide loading that can be produced through a simple, solvent‐ and surfactant‐free process. As demonstrated in our previous studies, this platform enables the simultaneous incorporation of both hydrophilic and hydrophobic compounds during material fabrication, offering potential cost reductions. Here, we investigate atrazine as a model herbicide. Its release kinetics were evaluated in both celite and natural soil as representative release media. In plant‐growth assays, atrazine‐loaded bicontinuous structures markedly reduced Brassica sp. growth, whereas no measurable effect was observed for Zea mays under the tested conditions.

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Cite This Study

Pizzetti et al. (2026) studied this question.

synapsesocial.com/papers/6a1fc47adee9eb8c0dce5fcehttps://doi.org/10.1002/ppsc.70102
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