首站-论文投稿智能助手
典型文献
Additive manufacturing of antibacterial PLA-ZnO nanocomposites:Benefits,limitations and open challenges
文献摘要:
Polymeric biomaterials such as polylactic acid(PLA)play a prominent role in the advancement of biomedical additive manufacturing(AM).PLA offers indeed a very advantageous combination of thermo-mechanical properties and functional attributes,as it is biobased,biodegradable,biocompatible and easy to print.However,PLA can be damaged by common sterilization methods and is sensitive to most chemi-cal disinfectants,and this may impair its widespread usage.One of the most promising ways to overcome this shortcoming is to provide PLA with embedded antibacterial activity by the addition of appropriate fillers such as zinc oxide(ZnO)nanoparticles.After a detailed introduction to the basic properties of PLA and ZnO nanoparticles,the present review analyzes the main variables that govern the antibacte-rial activity of PLA-ZnO nanocomposites.Current applications and related manufacturing processes are also presented to showcase the importance of having embedded antibacterial functions in demanding applications such as food packaging and wound dressing.Emphasis is then placed on the emerging lit-erature of the AM of PLA-ZnO nanocomposites,with a focus on fused filament fabrication(also known as fused deposition modeling).Existing gaps and hurdles related to the development and 3D printing of such composites is critically discussed.It is envisioned that a deeper understanding of the processability,thermo-mechanical behavior,biocompatibility and antibacterial efficacy of additively manufactured PLA-ZnO nanocomposites will foster their adoption in the biomedical field and,ultimately,in all circumstances where it is crucial to limit infection transmission.
文献关键词:
作者姓名:
Wei Juene Chong;Shirley Shen;Yuncang Li;Adrian Trinchi;Dejana Pejak;Ilias(Louis)Kyratzis;Antonella Sola;Cuie Wen
作者机构:
School of Engineering,RMIT University,Melbourne,Victoria 3001,Australia;CSIRO Manufacturing Business Unit,Clayton,Victoria 3169,Australia
引用格式:
[1]Wei Juene Chong;Shirley Shen;Yuncang Li;Adrian Trinchi;Dejana Pejak;Ilias(Louis)Kyratzis;Antonella Sola;Cuie Wen-.Additive manufacturing of antibacterial PLA-ZnO nanocomposites:Benefits,limitations and open challenges)[J].材料科学技术(英文版),2022(16):120-151
A类:
antibacte
B类:
Additive,manufacturing,antibacterial,PLA,ZnO,nanocomposites,Benefits,limitations,open,challenges,Polymeric,biomaterials,such,polylactic,acid,play,prominent,role,advancement,biomedical,AM,offers,indeed,very,advantageous,combination,thermo,mechanical,properties,functional,attributes,biobased,biodegradable,biocompatible,easy,However,can,damaged,by,common,sterilization,methods,sensitive,most,chemi,disinfectants,this,may,impair,widespread,usage,One,promising,ways,overcome,shortcoming,provide,embedded,activity,addition,appropriate,fillers,zinc,oxide,nanoparticles,After,detailed,introduction,basic,review,analyzes,main,variables,that,govern,Current,applications,related,processes,are,also,presented,showcase,importance,having,functions,demanding,food,packaging,wound,dressing,Emphasis,then,placed,emerging,erature,focus,fused,filament,fabrication,known,deposition,modeling,Existing,gaps,hurdles,development,printing,critically,discussed,It,envisioned,deeper,understanding,processability,behavior,biocompatibility,efficacy,additively,manufactured,will,foster,their,adoption,field,ultimately,circumstances,where,crucial,infection,transmission
AB值:
0.623611
相似文献
Carbon dots enhanced gelatin/chitosan bio-nanocomposite packaging film for perishable foods
Bofei Fu;Qiaoling Liu;Minghuan Liu;Xiaofang Chen;Hetong Lin;Zongping Zheng;Junqiu Zhu;Congjie Dai;Xiaochen Dong;Da-Peng Yang-Key Laboratory of Chemical Materials and Green Nanotechnology,College of Chemical Engineering and Materials Science,Quanzhou Normal University,Quanzhou 362000,China;College of Food Science,Fujian Agriculture and Forestry University,Fuzhou 350002,China;Department of Clinical Laboratory,The Second Affiliated Hospital of Fujian Medical University,Quanzhou 362000,China;Fujian Province Key Laboratory for Preparation and Function Development of Active Substances from Marine Algae,College of Oceanology and Food Science,Quanzhou Normal University,Quanzhou 362000,China;School of Physical and Mathematical Sciences,Nanjing Tech University,Nanjing 211800,China
Nano-enhanced biolubricant in sustainable manufacturing:From processability to mechanisms
Yanbin ZHANG;Hao Nan LI;Changhe LI;Chuanzhen HUANG;Hafiz Muhammad ALI;Xuefeng XU;Cong MAO;Wenfeng DING;Xin CUI;Min YANG;Tianbiao YU;Muhammad JAMIL;Munish Kumar GUPTA;Dongzhou JIA;Zafar SAID-School of Mechanical and Automotive Engineering,Qingdao University of Technology,Qingdao 266520,China;School of Aerospace,University of Nottingham Ningbo China,Ningbo 315100,China;School of Mechanical Engineering,Yanshan University,Qinhuangdao 066004,China;Mechanical Engineering Department,King Fahd University of Petroleum and Minerals,Dhahran 31261,Saudi Arabia;Key Laboratory of Special Purpose Equipment and Advanced Processing Technology,Ministry of Education&Zhejiang Province,Zhejiang University of Technology,Hangzhou 310032,China;College of Automotive and Mechanical Engineering,Changsha University of Science and Technology,Changsha 410114,China;College of Mechanical and Electrical Engineering,Nanjing University of Aeronautics and Astronautics,Nanjing 210016,China;School of Mechanical Engineering&Automation,Northeastern University,Shenyang 110006,China;Industrial Engineering Department,University of Engineering and Technology Taxila,Taxila 47080,Pakistan;School of Mechanical Engineering,Shandong University,Jinan 250061,China;College of Mechanical Engineering and Automation,Liaoning University of Technology,Jinzhou 121001,China;College of Engineering,University of Sharjah,Sharjah 27272,United Arab Emirates
Metal matrix nanocomposites in tribology:Manufacturing,performance,and mechanisms
Shuaihang PAN;Kaiyuan JIN;Tianlu WANG;Zhinan ZHANG;Long ZHENG;Noritsugu UMEHARA-Department of Mechanical and Aerospace Engineering,University of California Los Angeles(UCLA),Los Angeles,CA 90095,USA;Physical Intelligence Department,Max Planck Institute for Intelligent Systems,Stuttgart 70569,Germany;Stake Key Laboratory of Mechanical System and Vibration,Shanghai Jiao Tong University,Shanghai 200240,China;Key Laboratory of Bionic Engineering(Ministry of Education),College of Biological and Agricultural Engineering,Jilin University,Changchun 130022,China;Micro-Nano Mechanical Science Laboratory,Department of Micro-Nano Mechanical Science and Engineering,Graduate School of Engineering,Nagoya University,Chikisa-ku Furo-cho,Nagoya,Aichi 464-8601,Japan
机标中图分类号,由域田数据科技根据网络公开资料自动分析生成,仅供学习研究参考。