Ul-Islam Mazhar, Ullah Muhammad Wajid, Khan Shaukat, Manan Shehrish, Khattak Waleed Ahmad, Ahmad Wasi, Shah Nasrullah, Park Joong Kon
Department of Chemical Engineering, Dhofar University, Şalālah, Oman.
Department of Chemical Engineering, Kyungpook National University, Daegu, 702-701, South Korea.
Environ Sci Pollut Res Int. 2017 May;24(14):12713-12722. doi: 10.1007/s11356-017-8765-3. Epub 2017 Apr 4.
Nanotechnology is a fast-emerging field and has received applications in almost every field of life. Exploration of new synthetic technologies for size and shape control of nanomaterials is getting immense consideration owing to their exceptional properties and applications. Magnetic nanoparticles (MNPs) are among the most important group of nanoparticles thanks to their diverse applications in medical, electronic, environmental, and industrial sectors. There have been numerous synthetic routes of MNPs including thermal decomposition, co-precipitation, microemulsion, microwave assisted, chemical vapor deposition, combustion synthesis, and laser pyrolysis synthesis. The synthesized MNPs have been successfully applied in medical fields for therapy, bioimaging, drug delivery, and so on. Among environmental aspects, there has been great intimidation of organic pollutants in air and water. Utilization of various wastes as adsorbents has removed 80 to 99.9% of pollutants from contaminated water. MNPs as adsorbents compared to coarse-grained counterparts have seven times higher capacity in removing water pollutants and degrading organic contaminants. This study is focused to introduce and compile various routes of MNP synthesis together with their significant role in water purifications and degradation of organic compounds. The review has compiled recent investigation, and we hope it will find the interest of researchers dealing with nanoparticles and environmental research. Graphical abstract Synthesis and applications of magnetic nanoparticles.
纳米技术是一个快速发展的领域,几乎在生活的各个领域都有应用。由于纳米材料具有特殊的性质和应用,探索用于控制其尺寸和形状的新合成技术受到了广泛关注。磁性纳米粒子(MNPs)是最重要的纳米粒子群体之一,因为它们在医疗、电子、环境和工业领域有多种应用。MNPs有多种合成途径,包括热分解、共沉淀、微乳液、微波辅助、化学气相沉积、燃烧合成和激光热解合成。合成的MNPs已成功应用于医疗领域的治疗、生物成像、药物递送等。在环境方面,空气和水中的有机污染物构成了巨大威胁。利用各种废物作为吸附剂可去除受污染水中80%至99.9%的污染物。与粗颗粒吸附剂相比,MNPs作为吸附剂去除水中污染物和降解有机污染物的能力高出七倍。本研究旨在介绍和汇总MNP合成的各种途径及其在水净化和有机化合物降解中的重要作用。这篇综述汇总了近期的研究,希望能引起从事纳米粒子和环境研究的人员的兴趣。图形摘要磁性纳米粒子的合成与应用。