数字农科院2.0

Self-assembled plant-based biomass materials for enhancing sustainable agriculture and food security

文献类型: 外文期刊

作者: Mingyao Wang;Xiao Yang;Tingting Gou;Tao Huang;Xiaoling Wang;Qichang Yang;Junling Guo

作者机构:

关键词: Nanoagrochemicals;Plant-based biomass materials;Self-assembly;Sustainable agriculture

期刊名称: Carbohydrate Polymers

ISSN: 0144-8617

年卷期: 2025 年 366 卷

页码:

收录情况: SCIE(2025版) ; ; EI(2025版)

摘要: Agrochemicals are widely utilized to improve crop yields and will continue to be used to secure the global demand for food when facing the growing global population (2050, 10 billion). However, a large amount of agrochemicals, especially nanopesticides and nanofertilizers, are lost to the environment, resulting in a significant effect on the ecosystem and food safety problems. Plant-based biomass materials, as the most abundant renewable resource, have attracted considerable interest in developing various functional nanoagrochemicals due to their eco-friendly and biocompatible attributes. Moreover, these materials are often used to tailor functional nanoagrochemicals with targeted and controlled release of active ingredients abilities from self-assembly due to their unique chemical and physical properties. In this review, the main non-covalent interactions of cellulose, lignin, and polyphenols were presented, which facilitate the design of functional nanoagrochemicals. Additionally, the new opportunities for the application of plant-based nanoagrochemicals to improve the use efficiency by achieving targeting or stimuli-responsiveness capabilities were emphasized. Furthermore, the applications of plant-based nanoagrochemicals in agricultural practices are reviewed. This review can offer a valuable overview for deepening the understanding of the design and development of plant-based nanoagrochemicals for the efficient utilization of agrochemicals.

分类号:

  • 相关文献

[1]Phytochemicals self-assemblies: Bridging biomedicine and agriculture for next-generation crop protection. Guangming Ma,Huiyan Li,Xuwen Sang,Lidong Cao,Xiangyang Li,Xiaohong Pan. 2026

[2]A Sterile Self-Assembled Sericin Hydrogel Via A Simple Two-Step Process. Zhang, Yeshun,Zhang, Yeshun,Zhao, Yuying,Wu, Tangfeng,Liang, Peisheng,Liang, Peisheng,Xia, Dingguo,Zhang, Guozheng,Zhang, Guozheng,Xia, Dingguo,Jiang, Rulan,Chen, Heguang,Cao, Xitao,Cao, Xitao,Fang, Ai,He, Xiaobai,He, Xiaobai,Fang, Ai. 2019

[3]Effective immobilization of Ru(bpy)(3)(2+) by functional composite phosphomolybdic acid anion on an electrode surface for solid-state electrochemiluminescene to sensitive determination of NADH. Li, Yali,Yang, Xiurong,Yang, Fan,Li, Yali,Wang, Yingping,Zheng, Peihua,Liu, Xiaoxu,Wang, Yingping. 2012

[4]Self-Assembly Multivalent Fluorescence-Nanobody Coupled Multifunctional Nanomaterial with Colorimetric Fluorescence and Photothermal to Enhance Immunochromatographic Assay. Li, Zhiqiang,Zhang, Wen,Zhang, Qi,Li, Peiwu,Tang, Xiaoqian. 2023

[5]A review on the utilization of flaxseed protein as interfacial stabilizers for food applications. Peng, Dengfeng,Ye, Jieting,Jin, Weiping,Yang, Jing,Geng, Fang,Deng, Qianchun. 2022

[6]Effects of heating rates on the self-assembly behavior and gelling properties of beef myosin. Fang, Tian,Han, Mengfan,Wang, Yue,Xiang, Xiaomei,Chen, Lin,Yang, Huijuan,Kang, Zhuangli,Huang, Feng,Fan, Xiaojing,Han, Minyi,Xu, Xinglian,Zhou, Guanghong,Ullah, Niamat,Feng, Xianchao. 2023

[7]Making the Complicated Simple: A Minimizing Carrier Strategy on Innovative Nanopesticides. Wenjie Shangguan,Qiliang Huang,Huiping Chen,Yingying Zheng,Pengyue Zhao,Chong Cao,Manli Yu,Yongsong Cao,Lidong Cao. 2024

[8]A novel bis-coumarin gelator W for the selective detection of Al3+ and its biological application. Ying Peng Zhang,Yu Ning Liang,Chen Yang,Yun Shang Yang,Hui Chen Guo,Hong Rui Zhang. 2024

[9]A Core Structural Protein That Builds the Locust Mandible with a Mechanical Gradient. Qi, Huitang,Ding, Yi,Teng, Yingda,Liang, Xiangyu,Chen, Lei,Ma, Jianli,Yang, Qing,Liu, Tian. 2024

[10]Preparation, design, identification and application of self-assembly peptides from seafood: A review. Zhe Xu,Shiying Han,Shuang Guan,Rui Zhang,Hongrui Chen,Lijuan Zhang,Lingyu Han,Zhijian Tan,Ming Du,Tingting Li. 2024

[11]Self-assembling anti-Gram-negative bacterial peptide derivatives with potent broad-spectrum antimicrobial activity. Hongyan Yang,Lan Wang,Fei Pan,Libo Yuan,Heng Du,Pei Zhang,Kui Lu. 2023

[12]Self-assembly of rice proteins: A perspective on elevating rice protein techno-functional properties. Fangcheng Jiang,Wangyang Shen,Dengfeng Peng,Weiping Jin,Qingrong Huang. 2024

[13]Fluorescence sensor based on layer-by-layer ligand self-assembled gold nanoclusters for on-site monitoring of chlorpyrifos. He Chen,Li An,Zhong Jin,Juan Zhou,Huan Ma,Jingwei Ma,Meng Li,Di Zhang,Lufei Zheng,Xujin Wu. 2025

[14]Self-assembly of antimicrobial peptide nanofibers enhances enzymatic stability for dual-mode capture and killing of multidrug-resistant clinical isolates. Xuanxuan Ma,Ruoyu Mao,Ya Hao,Yuanyuan Li,Xuan Li,Da Teng,Na Yang,Jianhua Wang. 2025

[15]Self-assembly antimicrobial peptide for treatment of multidrug-resistant bacterial infection. Xuanxuan Ma,Na Yang,Ruoyu Mao,Ya Hao,Yuanyuan Li,Ying Guo,Da Teng,Yinhua Huang,Jianhua Wang. 2024

[16]Antioxidant and antimicrobial sodium alginate/sodium carboxymethyl cellulose films loaded with self-assembled hesperidin nanorods for fruits preservation. Zexin Gao,Shuting Xie,Li Chang,Huijuan Tang,Zhimin Sun,Yong Deng,Yinqi Hu,Ying Xu,Mingbao Luan. 2025

[17]Induction of multicomponent peptide assembly via solvent exchange strategy for enhanced structure and bioactivities. Yajuan Li,David Julian McClements,Fei Pan,Longjiang Tian,Shanglin Li,Xin Zhang,Jingbo Liu,Ting Zhang,Zhiyang Du. 2024

[18]Tea Polyphenol Self-Assembly Nanocomposite Coating for Fruit Preservation. Xu, Wei,Jia, Xiyu,Yang, Mingchuan,Peng, Ziyi,Chen, Hongping,Zhang, Xiangchun,Wei, Bing. 2025

[19]Cyclodextrin-Based Pickering Emulsion Significantly Increases 6-Gingerol Loading Through Two Different Mechanisms: Cyclodextrin Cavity and Pickering Core. Xingran Kou,Dongdong Su,Jingzhi Zhang,Fei Pan,Jiamin Zhu,Qingran Meng,Qinfei Ke. 2025

[20]Hydrophobic group modification for constructing self-assembling antimicrobial peptide derivatives with superior antimicrobial performance. Hongyan Yang,Fei Pan,Lan Wang,Bingchao Duan,Jinhong Gao,Wenli Tian,Kui Lu. 2025

作者其他论文 更多>>