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锌负载多壁碳纳米管纳米复合材料:协同促进微量营养素释放和智能分配,以促进干旱条件下洋葱种子的生长。

Zinc-Supported Multiwalled Carbon Nanotube Nanocomposite: A Synergism to Micronutrient Release and a Smart Distributor To Promote the Growth of Onion Seeds in Arid Conditions.

机构信息

National Institute of Food Technology Entrepreneurship and Management , Sonepat 131028 , Haryana , India.

New York University Abu Dhabi , Abu Dhabi 129188 , United Arab Emirates.

出版信息

ACS Appl Mater Interfaces. 2018 Oct 31;10(43):36733-36745. doi: 10.1021/acsami.8b13464. Epub 2018 Oct 22.

Abstract

In the current scenario, nanotechnological applications in the agriculture sector showing potential impacts on the improvement of plant growth in terms of protection and safety are at a very nascent stage. The present study deals with the synergistic role of zinc (Zn) and multiwalled carbon nanotubes (MWCNTs) synthesized as a zinc oxide (ZnO)/MWCNT nanocomposite, a prospective applicant to modulate the micronutrient supply and enhance the growth of onion seeds, thereby replacing harmful, unsafe chemical fertilizers. To the best of our knowledge, this is the first report wherein MWCNTs have been envisaged as a micronutrient distributor and a nutrient stabilizer enhancing the growth of onion plant under arid conditions. The growth trend of onion seeds was evaluated in an aqueous medium with varied concentrations of (i) MWCNTs, (ii) zinc oxide nanoparticles, and (iii) ZnO/MWCNT nanocomposites. ZnO/MWCNT nanocomposites with 15 μg/mL concentration displayed the best seedling growth with the maximum number of cells in telophase. A significant growth trend with increased concentration of ZnO/MWCNTs displayed no negative impact on plant growth in contrast to that with the use of MWCNTs. The synergistic impact of Zn nanoparticles and MWCNTs in ZnO/MWCNT nanocomposites on the rate of germination was explained via a mechanism supported by scanning transmission electron microscopy.

摘要

在当前的情况下,纳米技术在农业领域的应用在保护和安全方面对提高植物生长具有潜在影响,目前仍处于起步阶段。本研究探讨了锌(Zn)和多壁碳纳米管(MWCNTs)的协同作用,它们被合成氧化锌(ZnO)/MWCNT 纳米复合材料,有望调节微量营养素的供应并促进洋葱种子的生长,从而取代有害、不安全的化肥。据我们所知,这是首次报道 MWCNTs 被设想为一种微量元素分配器和营养稳定剂,可在干旱条件下促进洋葱植物的生长。在不同浓度的(i)MWCNTs、(ii)氧化锌纳米粒子和(iii)ZnO/MWCNT 纳米复合材料的水溶液中评估了洋葱种子的生长趋势。浓度为 15μg/mL 的 ZnO/MWCNT 纳米复合材料显示出最佳的幼苗生长,在末期有最多的细胞。与使用 MWCNTs 相比,随着 ZnO/MWCNTs 浓度的增加,表现出显著的生长趋势,对植物生长没有负面影响。Zn 纳米粒子和 MWCNTs 在 ZnO/MWCNT 纳米复合材料中协同作用对发芽率的影响通过扫描透射电子显微镜支持的机制得到了解释。

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