Patent
US 9,933,420glucose
C₆H₁₂O₆
functional group for edge passivation
FIG. 3, the DOS of the passivated GNM is depicted before (curve 304) and after (curve 306) the binding with the GNM. As illustrated, there is no significant …
FIG. 3, the DOS of the passivated GNM is depicted before (curve 304) and after (curve 306) the binding with the GNM. As illustrated, there is no significant …
FIG. 6 is a graph illustrating density of states (DOS) and projected density of 5 states (PDOS) for a functionalized 9 x 9 super-cell graphene nanomesh before …
FIG. 6 is a graph illustrating density of states (DOS) and projected density of 5 states (PDOS) for a functionalized 9 x 9 super-cell graphene nanomesh before …
FIG. 7 is a graph illustrating density of states (DOS) and projected density of states (PDOS) for a functionalized 9 x 9 super-cell graphene nanomesh after …
FIG. 7 is a graph illustrating density of states (DOS) and projected density of states (PDOS) for a functionalized 9 x 9 super-cell graphene nanomesh after …
FIG. 7 is a graph illustrating density of states (DOS) and projected density of states (PDOS) for a functionalized 9 x 9 super-cell graphene nanomesh after …
FIG. 8 is a graph illustrating density of states (DOS) and projected density of states (PDOS) for a functionalized 10 x 10 super-cell graphene nanomesh before …
FIG. 8 is a graph illustrating density of states (DOS) and projected density of states (PDOS) for a functionalized 10 x 10 super-cell graphene nanomesh before …
FIG. 9 is a graph illustrating density of states (DOS) and projected density of states (PDOS) for a functionalized 10 x 10 super-cell graphene nanomesh after …
FIG. 9 is a graph illustrating density of states (DOS) and projected density of states (PDOS) for a functionalized 10 x 10 super-cell graphene nanomesh after …
specific charge transferred to graphene nanomesh per glucose binding event | 0.1–1 electron | graphene nanomesh |
glucose
C₆H₁₂O₆
functional group for edge passivation
FIG. 3, the DOS of the passivated GNM is depicted before (curve 304) and after (curve 306) the binding with the GNM. As illustrated, there is no significant …
FIG. 3, the DOS of the passivated GNM is depicted before (curve 304) and after (curve 306) the binding with the GNM. As illustrated, there is no significant …
FIG. 6 is a graph illustrating density of states (DOS) and projected density of 5 states (PDOS) for a functionalized 9 x 9 super-cell graphene nanomesh before …
FIG. 6 is a graph illustrating density of states (DOS) and projected density of 5 states (PDOS) for a functionalized 9 x 9 super-cell graphene nanomesh before …
FIG. 7 is a graph illustrating density of states (DOS) and projected density of states (PDOS) for a functionalized 9 x 9 super-cell graphene nanomesh after …
FIG. 7 is a graph illustrating density of states (DOS) and projected density of states (PDOS) for a functionalized 9 x 9 super-cell graphene nanomesh after …
FIG. 7 is a graph illustrating density of states (DOS) and projected density of states (PDOS) for a functionalized 9 x 9 super-cell graphene nanomesh after …
FIG. 8 is a graph illustrating density of states (DOS) and projected density of states (PDOS) for a functionalized 10 x 10 super-cell graphene nanomesh before …
FIG. 8 is a graph illustrating density of states (DOS) and projected density of states (PDOS) for a functionalized 10 x 10 super-cell graphene nanomesh before …
FIG. 9 is a graph illustrating density of states (DOS) and projected density of states (PDOS) for a functionalized 10 x 10 super-cell graphene nanomesh after …
FIG. 9 is a graph illustrating density of states (DOS) and projected density of states (PDOS) for a functionalized 10 x 10 super-cell graphene nanomesh after …
specific charge transferred to graphene nanomesh per glucose binding event | 0.1–1 electron | graphene nanomesh |
glucose
C₆H₁₂O₆
functional group for edge passivation
FIG. 3, the DOS of the passivated GNM is depicted before (curve 304) and after (curve 306) the binding with the GNM. As illustrated, there is no significant …
FIG. 3, the DOS of the passivated GNM is depicted before (curve 304) and after (curve 306) the binding with the GNM. As illustrated, there is no significant …
FIG. 6 is a graph illustrating density of states (DOS) and projected density of 5 states (PDOS) for a functionalized 9 x 9 super-cell graphene nanomesh before …
FIG. 6 is a graph illustrating density of states (DOS) and projected density of 5 states (PDOS) for a functionalized 9 x 9 super-cell graphene nanomesh before …
FIG. 7 is a graph illustrating density of states (DOS) and projected density of states (PDOS) for a functionalized 9 x 9 super-cell graphene nanomesh after …
FIG. 7 is a graph illustrating density of states (DOS) and projected density of states (PDOS) for a functionalized 9 x 9 super-cell graphene nanomesh after …
FIG. 7 is a graph illustrating density of states (DOS) and projected density of states (PDOS) for a functionalized 9 x 9 super-cell graphene nanomesh after …
FIG. 8 is a graph illustrating density of states (DOS) and projected density of states (PDOS) for a functionalized 10 x 10 super-cell graphene nanomesh before …
FIG. 8 is a graph illustrating density of states (DOS) and projected density of states (PDOS) for a functionalized 10 x 10 super-cell graphene nanomesh before …
FIG. 9 is a graph illustrating density of states (DOS) and projected density of states (PDOS) for a functionalized 10 x 10 super-cell graphene nanomesh after …
FIG. 9 is a graph illustrating density of states (DOS) and projected density of states (PDOS) for a functionalized 10 x 10 super-cell graphene nanomesh after …
specific charge transferred to graphene nanomesh per glucose binding event | 0.1–1 electron | graphene nanomesh |
glucose
C₆H₁₂O₆
functional group for edge passivation
FIG. 3, the DOS of the passivated GNM is depicted before (curve 304) and after (curve 306) the binding with the GNM. As illustrated, there is no significant …
FIG. 3, the DOS of the passivated GNM is depicted before (curve 304) and after (curve 306) the binding with the GNM. As illustrated, there is no significant …
FIG. 6 is a graph illustrating density of states (DOS) and projected density of 5 states (PDOS) for a functionalized 9 x 9 super-cell graphene nanomesh before …
FIG. 6 is a graph illustrating density of states (DOS) and projected density of 5 states (PDOS) for a functionalized 9 x 9 super-cell graphene nanomesh before …
FIG. 7 is a graph illustrating density of states (DOS) and projected density of states (PDOS) for a functionalized 9 x 9 super-cell graphene nanomesh after …
FIG. 7 is a graph illustrating density of states (DOS) and projected density of states (PDOS) for a functionalized 9 x 9 super-cell graphene nanomesh after …
FIG. 7 is a graph illustrating density of states (DOS) and projected density of states (PDOS) for a functionalized 9 x 9 super-cell graphene nanomesh after …
FIG. 8 is a graph illustrating density of states (DOS) and projected density of states (PDOS) for a functionalized 10 x 10 super-cell graphene nanomesh before …
FIG. 8 is a graph illustrating density of states (DOS) and projected density of states (PDOS) for a functionalized 10 x 10 super-cell graphene nanomesh before …
FIG. 9 is a graph illustrating density of states (DOS) and projected density of states (PDOS) for a functionalized 10 x 10 super-cell graphene nanomesh after …
FIG. 9 is a graph illustrating density of states (DOS) and projected density of states (PDOS) for a functionalized 10 x 10 super-cell graphene nanomesh after …
specific charge transferred to graphene nanomesh per glucose binding event | 0.1–1 electron | graphene nanomesh |