Keyphrases
Cellular Environment
100%
Antimony Tin Oxide
100%
Biochemical Pathways
100%
Reaction Center
63%
DNA Nanostructures
57%
Cytochrome c (Cyt c)
57%
Ubiquinone
36%
Enzyme Complex
31%
Photosystem I (PS I)
26%
Nicotinamide Adenine Dinucleotide Phosphate (NADPH)
26%
Diaphorase
26%
Photocurrent
21%
Tin Electrodes
21%
Photosynthetic Reaction Center
15%
Light-driven
15%
Redox
15%
Cytochrome
15%
Bacterial Photosynthetic Reaction Centers
15%
Bacterial Reaction Center
15%
DNA Strands
10%
Peptide nucleic Acid
10%
Macroporous
10%
Tin Oxide Films
10%
Enzymatic Function
10%
Dynamic Structure
10%
Electrode System
10%
DNA Nanodevice
10%
Assisted Design
5%
Electronic Control
5%
Redox Chemistry
5%
NAD(P)H Dehydrogenase
5%
Negative Potential
5%
Electronic Media
5%
Control Efficacy
5%
Cellular Processes
5%
Nanostructures
5%
Self-assembly
5%
High Specificity
5%
Action Spectrum
5%
Binding Pocket
5%
Order of Magnitude
5%
Antimony-doped Tin Oxide
5%
Porous Structure
5%
Good Electrical Conductivity
5%
Self-assembled Systems
5%
Efficient Utilization
5%
Dehydrogenase
5%
Macromolecules
5%
Antimony Doping
5%
Dynamic Self-assembly
5%
Enzyme Function
5%
Nanoporous
5%
Oxidation Potential
5%
Dehydrogenase Enzyme
5%
Stability Control
5%
Peptide Array
5%
System Work
5%
Molecular Recognition Element
5%
Near-zero
5%
Inset
5%
Photoelectron
5%
Carbon Compounds
5%
Current Carriers
5%
Target Enzyme
5%
Linker
5%
Solar Energy Conversion
5%
Absorption Spectra
5%
Porous ITO
5%
High Affinity
5%
Enzyme Concentration
5%
Local Concentration
5%
Competitive Efficiency
5%
Porous Electrode
5%
Wireframe
5%
Binding Site
5%
Three-dimensional (3D)
5%
Enzyme Orientation
5%
Extracellular Environment
5%
Nanocage Structure
5%
Electrode Reaction
5%
Single-stranded DNA (ssDNA)
5%
3D Architecture
5%
Increased Throughput
5%
FTO Glass
5%
Tetrahedral DNA
5%
Peptide Library
5%
Active Form
5%
Electrical Connection
5%
Enzyme Efficiency
5%
Electrode Potential
5%
DNA Scaffold
5%
Natural Partners
5%
Peptide Ligand
5%
Functional Stability
5%
Optical Control
5%
Catalyzed Reaction
5%
Electron Transfer
5%
Electrode Surface
5%
Redox Enzymes
5%
Spectroelectrochemical Method
5%
Spectroelectrochemistry
5%
Throughput Efficiency
5%
Optical Density
5%
Redox Potential
5%
Overall Rate
5%
Multiple Ligands
5%
DNA Enzyme
5%
Quinone Binding
5%
Conformational Change
5%
Oxide Systems
5%
Self-healing
5%
Cryogenic Electron Microscopy
5%
Arizona State University
5%
Effective Surface Area
5%
Quinones
5%
Bacterial System
5%
Electron Carrier
5%
Electrode Materials
5%
Local Effectiveness
5%
Biological Enzyme
5%
Small Protein
5%
Nucleic Acid Ligand
5%
DNA Origami
5%
Molecular Tweezers
5%
Photoproduction
5%
Nanostructured Systems
5%
Competitive Advantage
5%
Electrolyte Solution
5%
Chemistry
Antimony
100%
Deoxyribonucleic Acid
100%
Tin Oxide
95%
Nanomaterial
52%
Cytochrome
52%
Porosity
33%
Photosynthetic Reaction Center
28%
NADPH
23%
Ubiquinone
23%
Photosystem I
23%
Photocurrent
19%
Quinone
9%
Peptide Nucleic Acid
9%
Ubiquinone-0
9%
Macro Porosity
9%
Nanocage
9%
Liquid Film
9%
Biochemistry, Genetics and Molecular Biology
Translating (Language)
100%
Enzyme
100%
Cytochrome
45%
Ubiquinone
29%
Dihydrolipoamide Dehydrogenase
20%
Photosystem I
20%
Photosynthetic Reaction Centre
12%
Oxidoreductase
12%
Photosystem
12%
Oxidation Reduction Potential
8%
Peptide Nucleic Acid
8%
DNA Strand
8%
Solution and Solubility
8%
Enzyme Activity
8%