TiVAlC-MAX 材料
编号:BK2020061728
价格: ¥190-¥1710
货号:BK2020061728-03
规格:5g 400目、1g 400目、0.5g 400目
货号 | CAS号 | 编号 | 包装 | 参数 | 库存 | 补货期 | 价格 |
BK2020061728-01 | BK2020061728 | 0.5g | 400目 | 100 | 190 | ||
BK2020061728-02 | BK2020061728 | 1g | 400目 | 100 | 380 | ||
BK2020061728-03 | BK2020061728 | 5g | 400目 | 100 | 1710 |
产品信息:
名称:TiVAlC MAX 相材料(碳化钛钒铝)
尺寸:1-5um
状态:粉体
颜色:灰色
刻蚀方案:LiF/HCl
剥离方案:超声
产品性能:优良的Mxene前驱体可由HF处理或HCl+LiF处理得到MXene
纯度:99%
储存条件:常温干燥
应用领域:储能、催化、分析化学、力学、吸附、生物、微电子、传感器等
尺寸工艺均可定制 可用于制备Mxene材料
产品介绍(Product introduction)
MAX相陶瓷(包括钛碳化硅,Ti3AlC2材料等)是一种备受关注的新型可加工导电陶瓷材料这类陶瓷包含六十多种三元碳化物或氮化物.M代表过渡族前部金属元素; A代表主族元素,主要是第三主族和第四主族的元素; X代表碳或氮元素。其中Ti3SiC2研究最为广泛.Ti3SiC2由美国Drexel大学的Barsoum M教授课题组于1996年用热压法成功合成,并且发现了其优异的性能。由于独特的纳米层状的晶体结构,这类陶瓷材料具有抗氧化,自润滑,室温高断裂韧性和可导电等性能。这类材料可以广泛应用为高温结构材料,电极电刷材料,化学防腐材料和高温发热体等。产品主要用于高温涂层,MXene前驱体,导电自润滑陶瓷,锂离子电池,超级电容器,电化学催化。
MAX phase ceramics (including titanium silicon carbide, Ti3AlC2 materials, etc.) are a new type of processing conductive ceramic materials that have attracted much attention. These ceramics contain more than sixty kinds of ternary carbides or nitrides. M represents the transitional front metal elements. ; A represents the main group element, mainly the elements of the third main group and the fourth main group; X represents a carbon or nitrogen element. Among them, Ti3SiC2 is the most widely studied. Ti3SiC2 was successfully synthesized by hot pressing method in 1996 by Professor Barsoum M of Drexel University in the United States, and its excellent performance was found. Due to the unique nano-layered crystal structure, these ceramic materials have antioxidant, self-lubricating properties, high room temperature fracture toughness and electrical conductivity. Such materials can be widely used as high temperature structural materials, electrode brush materials, chemical anticorrosive materials and high temperature heating elements. The products are mainly used for high temperature coating, MXene precursor, conductive self-lubricating ceramic, lithium ion battery, super capacitor, electrochemical catalysis.
应用领域(Application Fields)
MAX 已经被广泛应用到纳米吸附、生物传感器,离子筛分、催化、锂离子电池、超级电容器、润滑等诸多领域。
MAX have been widely used in nano-adsorption, biosensors, ion sieving, catalysis, lithium-ion batteries, supercapacitors, lubrication and many other fields.
注意事项(Notice)
1.量大优惠
Large volume discount
2.如果您有任何问题,请联系我们
If you have any questions, please contact us.
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品质保证 高水准领先同行业
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