Research paperExperimental GrowthExperimental CharacterizationBlood Works for Graphene ProductionXiaofan Cai, Ming Li, Chao Chen, Renjun Du et al.arXiv preprint·2024·10.1021/acsanm.4c00914·arXiv:2404.18045AbstractThis study demonstrates high-quality graphene domains with controlled thickness grown in a one-step atmospheric-pressure CVD process using blood as a precursor. Raman spectroscopy and electrical transport measurements indicate uniform, high-quality graphene, and the paper discusses blood-plasma components and inorganic salts as contributors to growth chemistry.Read more
Blood-grown graphene domains produced on copper foil by atmospheric-pressure CVD.1 preparation5 characterizations2 figuresExperimentalCStudied MaterialCuCatalyst SubstrateExpand
Research paperExperimental GrowthExperimental CharacterizationBlood Works for Graphene ProductionXiaofan Cai, Ming Li, Chao Chen, Renjun Du et al.arXiv preprint·2024·10.1021/acsanm.4c00914·arXiv:2404.18045AbstractThis study demonstrates high-quality graphene domains with controlled thickness grown in a one-step atmospheric-pressure CVD process using blood as a precursor. Raman spectroscopy and electrical transport measurements indicate uniform, high-quality graphene, and the paper discusses blood-plasma components and inorganic salts as contributors to growth chemistry.Read more
Blood-grown graphene domains produced on copper foil by atmospheric-pressure CVD.1 preparation5 characterizations2 figuresExperimentalCStudied MaterialCuCatalyst SubstrateExpand
Research paperExperimental GrowthExperimental CharacterizationBlood Works for Graphene ProductionXiaofan Cai, Ming Li, Chao Chen, Renjun Du et al.arXiv preprint·2024·10.1021/acsanm.4c00914·arXiv:2404.18045AbstractThis study demonstrates high-quality graphene domains with controlled thickness grown in a one-step atmospheric-pressure CVD process using blood as a precursor. Raman spectroscopy and electrical transport measurements indicate uniform, high-quality graphene, and the paper discusses blood-plasma components and inorganic salts as contributors to growth chemistry.Read more
Blood-grown graphene domains produced on copper foil by atmospheric-pressure CVD.1 preparation5 characterizations2 figuresExperimentalCStudied MaterialCuCatalyst SubstrateExpand
Research paperExperimental GrowthExperimental CharacterizationBlood Works for Graphene ProductionXiaofan Cai, Ming Li, Chao Chen, Renjun Du et al.arXiv preprint·2024·10.1021/acsanm.4c00914·arXiv:2404.18045AbstractThis study demonstrates high-quality graphene domains with controlled thickness grown in a one-step atmospheric-pressure CVD process using blood as a precursor. Raman spectroscopy and electrical transport measurements indicate uniform, high-quality graphene, and the paper discusses blood-plasma components and inorganic salts as contributors to growth chemistry.Read more
Blood-grown graphene domains produced on copper foil by atmospheric-pressure CVD.1 preparation5 characterizations2 figuresExperimentalCStudied MaterialCuCatalyst SubstrateExpand