Graphene Supermarket二氧化硅基底单层氮化硼薄膜
英文名 | Activated charcoal | CAS号 | 7440-44-0 |
试剂别名 |
Carbon-12C; CarbonpowderNmesh; Activated Charcoal Norit; Activatedcarbonxmeshblackgran; carbon soot; CarbonrodsNmmdiaxcm; carbosieve S-111; carbosieve G 45/60; carbosieve G 60/80; carbosieve G 80/100; carbosieve G 100/120; carbopack C; carboxen-563; carboxen-564; gc packing; carbopack B; carbopack B ht; carbotrap; Charcoal, activated; CarbonsheetNmmthickxcmwide; Acetylene carbon black (100% compressed); CarbonyarnNmmdia; Activatedcarbonblackpowder; CARBON ACTIVATED PWD DARCO G60; Carbon, activated; Activated carbon~Charcoal, activated; Activated carbon; Carbon powder; Charcoal blocks; Activated charcoal; Graphite; Acetylene carbon (50% compressed); Carbon rods; Carbon sheet; Carbon yarn; NORIT?A SUPRA; NORIT?SA II; Norit ?SX4; Fullerene carbon soot; Charcoal
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分子式 | C |
产品编号 | NJXF059 | 分子量 | 12.01 |
MDL号 | MFCD00133992 |
产品名称: | Graphene Supermarket二氧化硅基底单层氮化硼薄膜 |
英文名称: | Activated charcoal |
英文别名: | Carbon-12C; CarbonpowderNmesh; Activated Charcoal Norit; Activatedcarbonxmeshblackgran; carbon soot; CarbonrodsNmmdiaxcm; carbosieve S-111; carbosieve G 45/60; carbosieve G 60/80; carbosieve G 80/100; carbosieve G 100/120; carbopack C; carboxen-563; carboxen-564; gc packing; carbopack B; carbopack B ht; carbotrap; Charcoal, activated; CarbonsheetNmmthickxcmwide; Acetylene carbon black (100% compressed); CarbonyarnNmmdia; Activatedcarbonblackpowder; CARBON ACTIVATED PWD DARCO G60; Carbon, activated; Activated carbon~Charcoal, activated; Activated carbon; Carbon powder; Charcoal blocks; Activated charcoal; Graphite; Acetylene carbon (50% compressed); Carbon rods; Carbon sheet; Carbon yarn; NORIT?A SUPRA; NORIT?SA II; Norit ?SX4; Fullerene carbon soot; Charcoal |
中文别名: | 活性炭 ;活性碳,活性炭黑,活性炭粉,活性炭颗粒 |
CAS No.: | 7440-44-0 |
分子式: | C |
分子量: | 12.01 |
包装:每盒4片 面积:8mm*8mm单片 基底:二氧化硅基底Single Layer CVD hexagonal Boron Nitride Film on 285 nm SiO2/Si substrates (p-doped), 8 mm x 8 mm: 4 packProperties of BN filmThe Raman Signal of BN on SiO2/Si is very weak. To characterize h-BN on SiO2/Si using Raman spectroscopy, you need to use a blue or high power laser and the signal may not be detectable on certain commercial systems. For more information regarding Raman spectroscopy and characterization of h-BN on SiO2/Si, refer to the following paper: Hunting for Monolayer Boron Nitride: Optical and Raman Signatures . The h-BN film is grown via CVD onto copper foil, then transferred to the SiO2/Si substrate. To see characterizations of the film before transfer, see our related product, h-BN on Copper Foil. Applications:BN on SiO2/Si wafers are ideal for creating graphene/BN interfaces, allowing the graphene to be precisely gated, increasing mobility, and reducing scattering. h-BN is appealing as a substrate for graphene-based electronics because its surface is atomically smooth, it is free of dangling bonds, and has an analogous structure to graphene. Using our h-BN on SiO2/Si wafers in conjunction with graphene, we encourage you to explore graphene heterostructures for transistor applications. |
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