Khan Rajib Hossain, Md. Abu Shyeed, Md Al Amin, Md. Samrat Hossain, Md. Saidur Rahman, Md. Habibur Rahman, Channa Nasreen
{"title":"Nanomaterials Function in Additive Manufacturing","authors":"Khan Rajib Hossain, Md. Abu Shyeed, Md Al Amin, Md. Samrat Hossain, Md. Saidur Rahman, Md. Habibur Rahman, Channa Nasreen","doi":"10.31257/2018/jkp/2023/v15.i02.13538","DOIUrl":null,"url":null,"abstract":"Nanomaterials are substances that have at least one dimension that falls within the three-dimensional nanoscale range or fundamental structural components made of substances that fall inside this range. Micro-nano 3D printing technology can realize the processing of 3D micro-nano structures with nanometer precision and has broad application prospects in many fields. Metals and polymers can be easily connected through bonding reactions to obtain metal-metal or covalent bonds in 3D printing. These potent chemical bonds make 3D-printed structures stable, and 3D printing of metals and plastics is developing rapidly. The review focuses on the latest developments in unique composite nanomaterials for different field applications, comprising nanomaterials and 3D printing technology. A summary of the mechanisms, functional characteristics, benefits, drawbacks, and applications of various nanomaterials used in scientific 3D printing includes metal-based nanomaterials, metal-organic frameworks, upconversion nanoparticles, and lipid-based nanoparticles. Finally, this study presents an overview and highlights the issues that need to be resolved for nanomaterials to continue to be developed for the advantages of 3D printing.","PeriodicalId":504306,"journal":{"name":"Journal of Kufa-Physics","volume":"40 32","pages":""},"PeriodicalIF":0.0000,"publicationDate":"2023-12-17","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Journal of Kufa-Physics","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.31257/2018/jkp/2023/v15.i02.13538","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
引用次数: 0
Abstract
Nanomaterials are substances that have at least one dimension that falls within the three-dimensional nanoscale range or fundamental structural components made of substances that fall inside this range. Micro-nano 3D printing technology can realize the processing of 3D micro-nano structures with nanometer precision and has broad application prospects in many fields. Metals and polymers can be easily connected through bonding reactions to obtain metal-metal or covalent bonds in 3D printing. These potent chemical bonds make 3D-printed structures stable, and 3D printing of metals and plastics is developing rapidly. The review focuses on the latest developments in unique composite nanomaterials for different field applications, comprising nanomaterials and 3D printing technology. A summary of the mechanisms, functional characteristics, benefits, drawbacks, and applications of various nanomaterials used in scientific 3D printing includes metal-based nanomaterials, metal-organic frameworks, upconversion nanoparticles, and lipid-based nanoparticles. Finally, this study presents an overview and highlights the issues that need to be resolved for nanomaterials to continue to be developed for the advantages of 3D printing.
纳米材料是指至少有一个维度在三维纳米范围内的物质或由在此范围内的物质制成的基本结构组件。微纳三维打印技术可以实现纳米级精度的三维微纳结构加工,在许多领域具有广阔的应用前景。在三维打印技术中,金属和聚合物可以很容易地通过键合反应连接起来,获得金属-金属或共价键。这些强有力的化学键使 3D 打印结构变得稳定,金属和塑料的 3D 打印正在迅速发展。本综述重点介绍了用于不同领域应用的独特复合纳米材料的最新发展,包括纳米材料和三维打印技术。综述了用于科学 3D 打印的各种纳米材料的机理、功能特性、优点、缺点和应用,包括金属基纳米材料、金属有机框架、上转换纳米粒子和脂基纳米粒子。最后,本研究综述并强调了为继续开发纳米材料以发挥三维打印的优势而需要解决的问题。