演讲嘉宾-Md Julker Nine

Md Julker Nine
University of Adelaide
Md J. Nine is an early-career research fellow based in ARC Research Hub for Graphene Enabled Industry Transformation, University of Adelaide, Australia. After finishing bachelor’s degree from Khulna University of Engineering & Technology, Bangladesh in 2009, he worked under Second Phase of Brain Korea21 (BK21) and received Master of Engineering degree from Gyeongsang National University, South Korea in 2012. In 2017, he was conferred his PhD degree on “Graphene based multifunctional coatings” from School of Chemical Engineering, University of Adelaide, Australia. 
Dr. Nine’s current research interests involves colloids and interfaces science for synthesis and application of multifunctional inks and coatings based on graphene and graphene like 2D materials. The applications of coatings are not limited to self-cleaning, corrosion resistant, fire-retardant, acoustic insulation, anti-bacterial, radiation shielding and sensing. 
He was awarded Doctoral Research Medal as well as Postgraduate Alumni University Medal for outstanding research at PhD level in University of Adelaide. He was also awarded Carbon Journal prize-2018 for an outstanding PhD thesis in carbon materials science and technology. His PhD works generated three intellectual properties (IPs) on graphene technology and one of them was licenced to an industry.  He has published 35 scientific journal papers, 3 patents, 2 book chapters, >15 conference presentation in the area of colloids and interfaces including graphene and other carbon nanomaterials. 
演讲题目:Graphene for high-performance functional coatings
主题会场石墨烯改性防腐涂料市场应用促进大会
开始时间
结束时间
内容摘要

Since the discovery of graphene in 2004, this atomically thin hexagonally packed carbon layer has drawn phenomenal attention as a new disruptive material of 21st century owing to its fascinating electrical, mechanical, and optical properties. To date, an enormous interest in both academia and industry has already generated critical mass of research and development activity that resulted in approximately 100,000 journal publications and 15,000 patents on graphene based technology. In the last decade, graphene has also been extensively used for the development of advanced multifunctional protective coatings due to its excellent chemical resistance, impermeability to gases, adsorption capacity, antibacterial properties, mechanical strength, lubricity, and thermal stability as shown in Figure 1. The useful functional properties along with the structural merits of this 2D material have great potential for applications in the field of protective coatings including corrosion resistant, flame retardant, wear/scratch resistant, anti-fouling, pollutant adsorption, noise absorption, moisture insulation, and antiseptic coatings. Moreover, the recent ban on the use of many hazardous coating constituents (Cr (VI), Co, Cd, Cu, TBT, halogenated fire retardants) created tremendous scope for graphene to dominate coating industry as an efficient substitute of conventional hazardous materials. More importantly, the natural abundance of low-cost and high-quality graphite as the precursor for the top-down synthesis of graphene derivatives is an absolute advantage to reinforce the industrial transformation of graphene based composite coatings for multifunctional applications.


Figure 1. Potential properties of graphene derivatives for the multifunctional protective coatings.

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凯发_Md Julker Nine

凯发

演讲嘉宾-Md Julker Nine

Md Julker Nine
University of Adelaide
Md J. Nine is an early-career research fellow based in ARC Research Hub for Graphene Enabled Industry Transformation, University of Adelaide, Australia. After finishing bachelor’s degree from Khulna University of Engineering & Technology, Bangladesh in 2009, he worked under Second Phase of Brain Korea21 (BK21) and received Master of Engineering degree from Gyeongsang National University, South Korea in 2012. In 2017, he was conferred his PhD degree on “Graphene based multifunctional coatings” from School of Chemical Engineering, University of Adelaide, Australia. 
Dr. Nine’s current research interests involves colloids and interfaces science for synthesis and application of multifunctional inks and coatings based on graphene and graphene like 2D materials. The applications of coatings are not limited to self-cleaning, corrosion resistant, fire-retardant, acoustic insulation, anti-bacterial, radiation shielding and sensing. 
He was awarded Doctoral Research Medal as well as Postgraduate Alumni University Medal for outstanding research at PhD level in University of Adelaide. He was also awarded Carbon Journal prize-2018 for an outstanding PhD thesis in carbon materials science and technology. His PhD works generated three intellectual properties (IPs) on graphene technology and one of them was licenced to an industry.  He has published 35 scientific journal papers, 3 patents, 2 book chapters, >15 conference presentation in the area of colloids and interfaces including graphene and other carbon nanomaterials. 
演讲题目:Graphene for high-performance functional coatings
主题会场石墨烯改性防腐涂料市场应用促进大会
开始时间
结束时间
内容摘要

Since the discovery of graphene in 2004, this atomically thin hexagonally packed carbon layer has drawn phenomenal attention as a new disruptive material of 21st century owing to its fascinating electrical, mechanical, and optical properties. To date, an enormous interest in both academia and industry has already generated critical mass of research and development activity that resulted in approximately 100,000 journal publications and 15,000 patents on graphene based technology. In the last decade, graphene has also been extensively used for the development of advanced multifunctional protective coatings due to its excellent chemical resistance, impermeability to gases, adsorption capacity, antibacterial properties, mechanical strength, lubricity, and thermal stability as shown in Figure 1. The useful functional properties along with the structural merits of this 2D material have great potential for applications in the field of protective coatings including corrosion resistant, flame retardant, wear/scratch resistant, anti-fouling, pollutant adsorption, noise absorption, moisture insulation, and antiseptic coatings. Moreover, the recent ban on the use of many hazardous coating constituents (Cr (VI), Co, Cd, Cu, TBT, halogenated fire retardants) created tremendous scope for graphene to dominate coating industry as an efficient substitute of conventional hazardous materials. More importantly, the natural abundance of low-cost and high-quality graphite as the precursor for the top-down synthesis of graphene derivatives is an absolute advantage to reinforce the industrial transformation of graphene based composite coatings for multifunctional applications.


Figure 1. Potential properties of graphene derivatives for the multifunctional protective coatings.

关于主办方

联系我们
400-110-3655   

E-mail: meeting@c-gia.cn   meeting01@c-gia.cn

参展电话:13646399362(苏老师)

主讲申请:19991951101(王老师)

官方微信订阅号
Copyright © 中国国际石墨烯创新大会 版权所有     运营机构:北京现代华清材料科技发展有限责任公司
grapchina.org 京ICP备10026874号-12   grapchina.cn 京ICP备10026874号-23
京公网安备 11010802023402号
分享到: