Synthesis and Properties of Supramolecular Crops Based on PNZST Antiferroelectric Film

With the rapid development of ecological agriculture and the continuous changes of the ecological environment, crops are facing tremendous challenges. At the same time, people’s demand for the number and variety of crops is gradually increasing, so the synthesis and performance improvement of crops...

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Main Author: Feng Zhou
Format: Article
Language:English
Published: Wiley 2022-01-01
Series:Advances in Materials Science and Engineering
Online Access:http://dx.doi.org/10.1155/2022/1932294
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author Feng Zhou
author_facet Feng Zhou
author_sort Feng Zhou
collection DOAJ
description With the rapid development of ecological agriculture and the continuous changes of the ecological environment, crops are facing tremendous challenges. At the same time, people’s demand for the number and variety of crops is gradually increasing, so the synthesis and performance improvement of crops is imminent. The emergence of supramolecular crops has brought about huge changes in the yield of crops. In this paper, for the purpose of reducing the cost of crops and enhancing the ability of crops to adapt to the environment, PNZST antiferroelectric film materials are used to study the synthesis of supramolecular crops. Among them, rice, corn, and soybeans are used as reference objects for synthetic crops. Experiments were carried out in four aspects: growth rate, growth cycle, and yield. The growth status of the three crops in the past four years was monitored and recorded and analyzed. The survival rate of traditional rice was 86.3%–89.5%, the growth cycle was 86–90 days, and the yield was 69–77 kg/ha; the survival rate of traditional corn was 85.6%–89%, the growth cycle was 105–114 days, and the yield was 38–43 kg/ha; the survival rate of traditional soybean was 85.6%–89%, the growth cycle was 85–90 days, and the output was 14–16 kg/ha. The survival rate of synthetic rice was 95.5%–96.9%, the growth cycle was 63–66 days, and the yield was 83–86 kg/ha; the survival rate of synthetic corn was 97.3%–98.7%, the growth cycle was 85–95 days, and the yield was 53–56 kg/ha; the survival rate of synthetic soybeans was 96.3%–98.3%, the growth cycle was 59–68 days, and the yield was 29–33 kg/ha.
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spelling doaj-art-35503e075e2a437ca1b1eea9b048a37b2025-08-20T02:24:08ZengWileyAdvances in Materials Science and Engineering1687-84422022-01-01202210.1155/2022/1932294Synthesis and Properties of Supramolecular Crops Based on PNZST Antiferroelectric FilmFeng Zhou0Zhejiang Institute of Economics and TradeWith the rapid development of ecological agriculture and the continuous changes of the ecological environment, crops are facing tremendous challenges. At the same time, people’s demand for the number and variety of crops is gradually increasing, so the synthesis and performance improvement of crops is imminent. The emergence of supramolecular crops has brought about huge changes in the yield of crops. In this paper, for the purpose of reducing the cost of crops and enhancing the ability of crops to adapt to the environment, PNZST antiferroelectric film materials are used to study the synthesis of supramolecular crops. Among them, rice, corn, and soybeans are used as reference objects for synthetic crops. Experiments were carried out in four aspects: growth rate, growth cycle, and yield. The growth status of the three crops in the past four years was monitored and recorded and analyzed. The survival rate of traditional rice was 86.3%–89.5%, the growth cycle was 86–90 days, and the yield was 69–77 kg/ha; the survival rate of traditional corn was 85.6%–89%, the growth cycle was 105–114 days, and the yield was 38–43 kg/ha; the survival rate of traditional soybean was 85.6%–89%, the growth cycle was 85–90 days, and the output was 14–16 kg/ha. The survival rate of synthetic rice was 95.5%–96.9%, the growth cycle was 63–66 days, and the yield was 83–86 kg/ha; the survival rate of synthetic corn was 97.3%–98.7%, the growth cycle was 85–95 days, and the yield was 53–56 kg/ha; the survival rate of synthetic soybeans was 96.3%–98.3%, the growth cycle was 59–68 days, and the yield was 29–33 kg/ha.http://dx.doi.org/10.1155/2022/1932294
spellingShingle Feng Zhou
Synthesis and Properties of Supramolecular Crops Based on PNZST Antiferroelectric Film
Advances in Materials Science and Engineering
title Synthesis and Properties of Supramolecular Crops Based on PNZST Antiferroelectric Film
title_full Synthesis and Properties of Supramolecular Crops Based on PNZST Antiferroelectric Film
title_fullStr Synthesis and Properties of Supramolecular Crops Based on PNZST Antiferroelectric Film
title_full_unstemmed Synthesis and Properties of Supramolecular Crops Based on PNZST Antiferroelectric Film
title_short Synthesis and Properties of Supramolecular Crops Based on PNZST Antiferroelectric Film
title_sort synthesis and properties of supramolecular crops based on pnzst antiferroelectric film
url http://dx.doi.org/10.1155/2022/1932294
work_keys_str_mv AT fengzhou synthesisandpropertiesofsupramolecularcropsbasedonpnzstantiferroelectricfilm