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Physicochemical and structural features of heat treated silver-silica nanocomposite and their impact on biological properties

机译:热处理银 - 二氧化硅纳米复合材料的物理化学和结构特征及其对生物特性的影响

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摘要

In the last few decades, many nanostructures with varying properties and possible applications have been developed. These materials have been intended to work in various environmental temperature conditions. In this context, the main challenge has been to comprehend the impact of synergic interaction between individual elements included in non-annealed materials in relation to systems subjected to temperature impact. Another problem has corresponded to the impact of thermal modification on organisms such as bacteria and human cells. Such problems can be solved by the fabrication of a nanocomposite with mono-dispersed 8 nm silver (Ag-0 or Ag+) embedded into a silica carrier, followed by the analysis of the impact of heat treatment under various temperature conditions on its physicochemical features. Therefore, methodical studies reported in this text have shown an increase of silver particle size up to 170 nm, a decrease of its concentration, as well as the formation of sub-nanometer Ag+ and/or Ag2+ clusters as the temperature rises to 1173 K. In turn, the structurally disordered silica carrier had been entirely transformed to cristobalite and tridymite only at 1473 K as well as partial reduction of Ag2+ to Ag+. Simultaneously, inhibition of growth of Gram-positive and Gram-negative bacteria, as well as an increase in cytotoxicity towards human cells was observed as the temperature rose. As a final point, for the first time, a "pseudo" phase diagram of the structural alterations in the Ag/SiO2 nanocomposite has been created, as well as a model of silver-silica transformation to biological systems has been developed.
机译:在过去的几十年中,已经开发了许多具有不同性能和可能应用的纳米结构。这些材料旨在在各种环境温度条件下工作。在这种情况下,主要挑战是理解与经过温度撞击的系统中包括的单个元素之间的协同互动的影响。另一个问题对应于热改性对细菌和人细胞等生物的影响。这些问题可以通过用嵌入二氧化硅载体的单分散的8nm银(Ag-0或Ag +)的单分散的8nm银(Ag-0或Ag +)制备纳米复合材料来解决,然后分析各种温度条件下的热处理对其物理化学特征的影响。因此,本文报道的方法研究表明,银粒径增加至170nm,其浓度降低,以及亚纳米Ag +和/或Ag2 +簇的形成,随着温度升高到1173k。反过来,在1473k的1473k中仅完全转化为ristobalite和Tridymite的结构紊乱的二氧化硅载体,以及Ag 2 +至Ag +的部分还原。同时,观察到抑制革兰氏阳性和革兰氏阴性细菌的生长,以及朝向人细胞的细胞毒性增加,因为温度升高。作为最终点,首次已经产生了Ag / SiO2纳米复合材料中的结构改变的“假”相图,并且已经开发了对生物系统的银二氧化硅转化模型。

著录项

  • 来源
    《Materials science & engineering》 |2019年第10期|109790.1-109790.14|共14页
  • 作者单位

    Univ Silesia Inst Mat Sci 75 Pulku Piechoty 1a PL-41500 Chorzow Poland|Silesian Ctr Educ & Interdisciplinary Res 75 Pulku Piechoty 1A PL-41500 Chorzow Poland;

    Silesian Ctr Educ & Interdisciplinary Res 75 Pulku Piechoty 1A PL-41500 Chorzow Poland|Univ Silesia A Chelkowski Inst Phys 75 Pulku Piechoty 1 PL-41500 Chorzow Poland;

    Univ Silesia Inst Mat Sci 75 Pulku Piechoty 1a PL-41500 Chorzow Poland;

    Univ Silesia Dept Microbiol Jagiellonska 28 PL-40032 Katowice Poland;

    Univ Silesia Dept Microbiol Jagiellonska 28 PL-40032 Katowice Poland;

    Lukasiewicz R&D Network Inst Ceram & Bldg Mat Refractory Mat Div Gliwice Toszecka 99 PL-44100 Gliwice Poland;

    Lukasiewicz R&D Network Inst Ceram & Bldg Mat Refractory Mat Div Gliwice Toszecka 99 PL-44100 Gliwice Poland;

    Silesian Ctr Educ & Interdisciplinary Res 75 Pulku Piechoty 1A PL-41500 Chorzow Poland|Univ Silesia A Chelkowski Inst Phys 75 Pulku Piechoty 1 PL-41500 Chorzow Poland;

    Silesian Ctr Educ & Interdisciplinary Res 75 Pulku Piechoty 1A PL-41500 Chorzow Poland|Univ Silesia A Chelkowski Inst Phys 75 Pulku Piechoty 1 PL-41500 Chorzow Poland;

    Univ Silesia Inst Mat Sci 75 Pulku Piechoty 1a PL-41500 Chorzow Poland|Silesian Ctr Educ & Interdisciplinary Res 75 Pulku Piechoty 1A PL-41500 Chorzow Poland|Univ Hradec Kralove Dept Phys Rokitanskeho 62 Hradec Kralove 50003 Czech Republic;

    Silesian Ctr Educ & Interdisciplinary Res 75 Pulku Piechoty 1A PL-41500 Chorzow Poland|Univ Silesia A Chelkowski Inst Phys 75 Pulku Piechoty 1 PL-41500 Chorzow Poland;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Chemical reduction; Silver-silica nanocomposite; Physicochemical features; Morphology; Particle size and distribution; Chemical composition modification; Annealing; Antimicrobial activity; Cytotoxicity;

    机译:化学降低;银二氧化硅纳米复合材料;物理化学特征;形态;粒度和分布;化学成分改性;退火;抗菌活性;细胞毒性;

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