Graphene is an isoform (form) in which a single layer of carbon atoms is arranged in a hexagonal lattice. It is the basic structural element of many other isomorphs of carbon, such as graphite, diamonds, carbon, carbon nanotubes and fullerenes.Graphene differs from conventional 3D materials in that it is a semi-metal or zero-gap semiconductor. It has a remarkable electron mobility at room temperature and it has been showed it..
(1)Lower percolation value than that of conductive carbon black.
(2)Easy to be processed and dispersed with ultra-thin planar structure.
(3)1-3% addition is suggested for conductive coatings.
(4)Can be used as additives in cathode or anode of lithium ion battery to increase the battery's capacity, cycling life and rate retention.
(5)Can be integrated to prepare the thermal conductive composites and thermal radiation coatings.
Graphene is a new type of internal heating material. Graphene internal heating fiber is a kind of intelligent multifunctional fiber material which is made up of biomass graphene and various kinds of fibers. It has low temperature and far infrared function and is antibacterial and antibacterial. Anti-UV, anti-static and so on. The fabric material made of biomass graphene has no difference in touch and common fabric, but has unique effects on functions such as internal warming, bacteriostatic, ultraviolet protection and deodorization. It can even function as a warming palace and relieve cervical pain. Since the electrothermal conversion efficiency of graphene can reach 99%, it has an absolute advantage compared with other heat-generating materials. Secondly, the traditional resistance wire heats up, and it is prone to short-circuit fire, water-uninterrupted power, and human comfort..
Nou gen anpil faktori-wo kalite ak gwo koperasyon, ki ka ba ou bon jan kalite pwodwi ak pri konpetitif. Epi nou ka bay tou rabè pou acha esansyèl. Epi nou kolabore ak anpil konpayi transpò machandiz pwofesyonèl, ka delivre pwodwi san danje epi san pwoblèm nan men ou. Tan livrezon se sou 3-20 jou apre konfimasyon peman an.
pe |
Spec. |
Size(%) |
Carbon Contents (%) |
Moisture (%) |
|
Screen Oversize | Screen Undersize | ||||
High Carbon |
32Mesh |
≥80 |
94-99 |
≤0.5 |
|
50Mesh | |||||
80Mesh | |||||
100Mesh | |||||
150Mesh | ≥75 | ||||
-100Mesh |
≥80 |
||||
-200Mesh | |||||
Middle Carbon |
32Mesh |
≥80 |
85-93 |
≤0.5 |
|
50Mesh | |||||
80Mesh | |||||
100Mesh | |||||
150Mesh | ≥75 | ||||
-100Mesh | ≥80 |
1. Graphene oxide (GRAPHENE OXIDE) referred to as GO
2. Graphene oxide products contain rich oxygen-containing functional groups, soluble in water, NMP, DMF, ethylene glycol and other solvents, and have good dispersion properties in solvents such as ethanol and THFD.
3. Graphene oxide products are characterized by high purity and good dispersibility, and can be widely used in the field of catalytic materials as a catalyst carrier for loading nanoparticles, oxides and the like. It can also be used in the field of environmentally friendly materials to absorb heavy metals, dyes and other pollutants. It can also be used in polymer composites, coatings, buried batteries and supercapacitors.
The conductive ink is an ink made of a conductive material and has a certain degree of conductivity, and can be used as a printed conductive point or a conductive line. In recent years, it has become more and more widely used in industries such as mobile phones, toys, membrane switches, solar cells, far-infrared heating films and radio frequency identification technologies. In the past few decades, the largest downstream of conductive inks has been solar cells and display devices. Future applications including touch sensors and their electrodes, RFID and electronic paper will also continue to grow.
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