MXenes-Max 2D transition metal carbonitride |
MBene two-MAB-dimensional transition metal borides |
MOFs metal organic framework compound |
COFs covalent organic compound |
Bioluminescent dyes |
Aerogels |
CVD TMDC 2D thin film / heterojunction |
Perovskite material |
Copper-doped modified lead apatite (LK 99 crystal powder) |
2D material fiber/film |
Two-dimensional material micro-nano processing - in situ testing |
Basic magnetic beads, immunomagnetic beads, protein purification magnetic beads, nucleic acid extraction magnetic beads |
Nucleic acid extraction kit |
High-entropy materials |
Biological nanomaterials |
Nanocellulose |
AIE luminescent material |
Silane Bismuthene Borene Tellurene Phosphorene Graphyne |
Binary CVD TMDC crystal/powder/dispersion |
Ternary CVD TMDC crystal/powder/dispersion |
Graphene and carbon nanomaterials |
High-performance battery materials |
Carbon nanotube/fullerene series |
Nano/micron powder material and AAO template |
Nanowires |
Molecular sieve |
Ionic liquid |
QDS |
Nanomaterial customization / material simulation calculation |
Metal nanomaterials |
Mesoporous materials |
Heavy launch-new products are online! |
Two-dimensional layered double hydroxide |
catalyst |
Nanosphere |
Material testing and consumables |
Inorganic Nanomaterials |
equipment |
MXenes 2D transition metal carbonitride |
MBene two-dimensional transition metal borides |
The MXene aqueous solution usually obtained is easily oxidized and degraded, so that the unique properties of the MXene nanosheets are lost. How to avoid the oxidation of MXene?
MXene with few layers of MXene colloid, multiple layers of MXene powder, few layers of MXene powder
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