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Appl. Nano, Volume 3, Issue 3 (September 2022) – 5 articles

Cover Story (view full-size image): In this work, an efficient synthesis of bionanohybrids as artificial metalloenzymes (Cu, Pd, Ag, Mn) based on the application of an enzyme as a scaffold was described. Here, we evaluated the effect of changing the metal, pH of the medium, and the amount of enzyme in the synthesis of these artificial metalloenzymes, where changes in the metal species and the size of the nanoparticles occur. These nanozymes were applied in the degradation of hydrogen peroxide for their evaluation as mimetics of catalase activity, the best being the Mn@CALB-H2O, which presented MnO2 nanostructures, with three-fold improved activity compared to Cu2O species, CuNPs@CALB-P, and free catalase. View this paper
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24 pages, 2767 KiB  
Review
Zeolites as Carriers of Nano-Fertilizers: From Structures and Principles to Prospects and Challenges
by Vinayak Sharma, Bilal Javed, Hugh Byrne, James Curtin and Furong Tian
Appl. Nano 2022, 3(3), 163-186; https://doi.org/10.3390/applnano3030013 - 19 Sep 2022
Cited by 13 | Viewed by 5683
Abstract
The world is facing immense challenges in terms of food security, due to the combined impacts of the ever-increasing population and the adversity of climate change. In an attempt to counteract these factors, smart nutrient delivery systems, including nano-fertilizers, additives, and material coatings, [...] Read more.
The world is facing immense challenges in terms of food security, due to the combined impacts of the ever-increasing population and the adversity of climate change. In an attempt to counteract these factors, smart nutrient delivery systems, including nano-fertilizers, additives, and material coatings, have been introduced to increase food productivity to meet the growing food demand. Use of nanocarriers in agro-practices for sustainable farming contributes to achieving up to 75% nutrient delivery for a prolonged period to maintain nutrient availability in soil for plants in adverse soil conditions. In this context, sieve-like zeolites and the diversity in their structural morphologies have attracted increasing interest over recent years. Engineered nano-porous zeolites, also called aluminosilicates, are defined based on the presence of micro- (<2 nm), meso- (2–50 nm), and macropores (>50 nm), which can be employed as carriers of fertilizers due to their enhanced ion-exchange properties and adsorption capabilities. In this study, we provide a detailed overview of the production and optimization of hierarchical zeolite structures within the size range from micro- to nanometers, as well as the various top-down and bottom-up approaches which have been used to synthesize zeolites with a large surface area, tunable pore size, and high thermal stability, which make them an excellent candidate to be used in agronomy. The delivery of pesticides, insecticides, and fertilizers by loading them into nano-zeolites to manage the crop production without disrupting the soil health is discussed, as well as future perspectives of zeolites in the perpetual maintenance of soil productivity. Full article
(This article belongs to the Special Issue Review Papers for Applied Nano Science and Technology)
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3 pages, 217 KiB  
Editorial
Nanocomposites with Different Types of Nanofillers and Advanced Properties for Several Applications
by Dimitrios N. Bikiaris
Appl. Nano 2022, 3(3), 160-162; https://doi.org/10.3390/applnano3030012 - 8 Sep 2022
Cited by 5 | Viewed by 1721
Abstract
Polymer nanocomposites are an emerging technological field offering high-performance materials with unique and innovative properties, ideal for numerous advanced applications [...] Full article
11 pages, 3223 KiB  
Article
Catalase Like-Activity of Metal NPs–Enzyme Biohybrids
by Noelia Losada-Garcia, Alba Rodriguez-Otero, Clara Ortega-Nieto, Ariane Azarmi and Jose M. Palomo
Appl. Nano 2022, 3(3), 149-159; https://doi.org/10.3390/applnano3030011 - 7 Aug 2022
Cited by 4 | Viewed by 4678
Abstract
In this work, an efficient synthesis of bionanohybrids as artificial metalloenzymes (Cu, Pd, Ag, Mn) based on the application of an enzyme as a scaffold was described. Here we evaluated the effect of changing the metal, pH of the medium, and the amount [...] Read more.
In this work, an efficient synthesis of bionanohybrids as artificial metalloenzymes (Cu, Pd, Ag, Mn) based on the application of an enzyme as a scaffold was described. Here we evaluated the effect of changing the metal, pH of the medium, and the amount of enzyme in the synthesis of these artificial metalloenzymes, where changes in the metal species and the size of the nanoparticles occur. These nanozymes were applied in the degradation of hydrogen peroxide for their evaluation as mimetics of catalase activity, the best being the Mn@CALB-H2O, which presented MnO2 nanostructures, with three-fold improved activity compared to Cu2O species, CuNPs@CALB-P, and free catalase. Full article
(This article belongs to the Collection Feature Papers for Applied Nano)
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6 pages, 1107 KiB  
Communication
Formation of Stable Cruciform Assembly of Gold Nanoparticles from Cannabis indica Leaves
by Anjul Khadria and Subhankar Paul
Appl. Nano 2022, 3(3), 143-148; https://doi.org/10.3390/applnano3030010 - 13 Jul 2022
Viewed by 1958
Abstract
Gold nanoparticles have been increasingly used in several electronic, material fabrication, and biomedical applications. Several methods have been reported to prepare gold nanoparticles of various shapes and sizes with different photophysical properties. Although useful to prepare gold nanoparticles, most of the methods are [...] Read more.
Gold nanoparticles have been increasingly used in several electronic, material fabrication, and biomedical applications. Several methods have been reported to prepare gold nanoparticles of various shapes and sizes with different photophysical properties. Although useful to prepare gold nanoparticles, most of the methods are not stable enough, which leads to the degradation of the nanoparticles, if they are stored at room temperatures (up to 30 °C) for a few days. In this paper, we report a novel and environmentally friendly method to synthesize self-assembled gold nanoparticles in cruciform shapes by using leaf extract of Cannabis indica as a reducing agent without the aid of any polymers or additional chemicals. The nanoparticles are found to be stable for more than a month (45 days) when stored at room temperature (up to 30 °C). They were able to form stable conjugates with bovine α-lactalbumin protein that may possess anti-cancerous properties. Full article
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17 pages, 2121 KiB  
Article
Montmorillonite Nanoclay and Formulation with Satureja montana Essential Oil as a Tool to Alleviate Xanthomonas euvesicatoria Load on Solanum lycopersicum
by Paulo R. Oliveira-Pinto, Nuno Mariz-Ponte, Renato L. Gil, Edite Cunha, Célia G. Amorim, Maria C. B. S. M. Montenegro, Manuel Fernandes-Ferreira, Rose M. O. F. Sousa and Conceição Santos
Appl. Nano 2022, 3(3), 126-142; https://doi.org/10.3390/applnano3030009 - 4 Jul 2022
Cited by 4 | Viewed by 2502
Abstract
Bacterial spot (BS) of tomato (S. lycopersicum), caused by Xanthomonas spp., namely X. euvesicatoria (Xeu), is one of the major threats for the production of this crop worldwide. Developing new biocontrol solutions against this disease will allow disease management strategies to [...] Read more.
Bacterial spot (BS) of tomato (S. lycopersicum), caused by Xanthomonas spp., namely X. euvesicatoria (Xeu), is one of the major threats for the production of this crop worldwide. Developing new biocontrol solutions against this disease will allow disease management strategies to be less based on Cu compounds. Nanoclays, such as montmorillonite (NMT), have been under investigation for their antimicrobial activity, or as delivery tools/stabilizers for organic compounds, such as essential oils (EOs), that also possess antimicrobial activity against plant pathogens. This work aims to assess how the application of NMT alone or incorporating S. montana EO on Xeu-infected hosts (var. Oxheart) affects the shoots’ redox status and antioxidant defense mechanisms. In vitro shoots, grown on Murashige and Skoog medium, were divided in two groups, Xeu-infected and uninfected (control) shoots. Shoots of each group were then treated with NMT, S. montana EO, EO-NMT. Results show that the NMT was able to reduce Xeu bacterial amount, while reducing ROS production and keeping the transcript levels of the defense-related genes close to those of the control. When applied to uninfected shoots, the treatments triggered the production of ROS and upregulated the phenylpropanoid and hormone pathway, which suggest that they act as defense elicitors. Globally, the results indicate that NMT has the potential to integrate BS management strategies, due to its antimicrobial activity, and that EO and/or nanoclays could be successfully employed as new disease preventive strategies, since they enhance the healthy shoots’ defense, thus potentially limiting the pathogen establishment. Full article
(This article belongs to the Special Issue Recent Advances and Challenges of Nanotechnology in Food)
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