Pub. Date : 2021 Oct 26
PMID : 34605518
12 Functional Relationships(s)Download |
Sentence | Compound Name | Protein Name | Organism |
1 | Sandwich-like SnS2/graphene multilayers for efficient lithium/sodium storage. | Graphite | sodium voltage-gated channel alpha subunit 11 | Homo sapiens |
2 | Herein, we report utilization of monolayer SnS2 sheets within SnS2/graphene multilayers for efficient lithium and sodium storage. | Graphite | sodium voltage-gated channel alpha subunit 11 | Homo sapiens |
3 | Herein, we report utilization of monolayer SnS2 sheets within SnS2/graphene multilayers for efficient lithium and sodium storage. | Graphite | sodium voltage-gated channel alpha subunit 11 | Homo sapiens |
4 | SnS2/graphene multilayers are synthesized through a solution-phase direct assembly method by electrostatic interaction between monolayer SnS2 and PDDA (polydimethyl diallyl ammonium chloride)-graphene nanosheets. | Graphite | sodium voltage-gated channel alpha subunit 11 | Homo sapiens |
5 | SnS2/graphene multilayers are synthesized through a solution-phase direct assembly method by electrostatic interaction between monolayer SnS2 and PDDA (polydimethyl diallyl ammonium chloride)-graphene nanosheets. | Graphite | sodium voltage-gated channel alpha subunit 11 | Homo sapiens |
6 | SnS2/graphene multilayers are synthesized through a solution-phase direct assembly method by electrostatic interaction between monolayer SnS2 and PDDA (polydimethyl diallyl ammonium chloride)-graphene nanosheets. | Graphite | sodium voltage-gated channel alpha subunit 11 | Homo sapiens |
7 | SnS2/graphene multilayers are synthesized through a solution-phase direct assembly method by electrostatic interaction between monolayer SnS2 and PDDA (polydimethyl diallyl ammonium chloride)-graphene nanosheets. | Graphite | sodium voltage-gated channel alpha subunit 11 | Homo sapiens |
8 | It has been shown that the SnS2/graphene multilayer electrode has a large pseudocapacity contribution for enhanced lithium and sodium storage. | Graphite | sodium voltage-gated channel alpha subunit 11 | Homo sapiens |
9 | The excellent electrochemical performances of SnS2/graphene multilayers are attributed to the synergistic effect between the monolayer SnS2 sheets and the PDDA-graphene nanosheets. | Graphite | sodium voltage-gated channel alpha subunit 11 | Homo sapiens |
10 | The excellent electrochemical performances of SnS2/graphene multilayers are attributed to the synergistic effect between the monolayer SnS2 sheets and the PDDA-graphene nanosheets. | Graphite | sodium voltage-gated channel alpha subunit 11 | Homo sapiens |
11 | The excellent electrochemical performances of SnS2/graphene multilayers are attributed to the synergistic effect between the monolayer SnS2 sheets and the PDDA-graphene nanosheets. | Graphite | sodium voltage-gated channel alpha subunit 11 | Homo sapiens |
12 | The excellent electrochemical performances of SnS2/graphene multilayers are attributed to the synergistic effect between the monolayer SnS2 sheets and the PDDA-graphene nanosheets. | Graphite | sodium voltage-gated channel alpha subunit 11 | Homo sapiens |