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Chemistry
Amphophile
100%
Peptide
87%
Nanomaterial
85%
Macrocycle
70%
Enantiomer
67%
formation
66%
Nanosheet
55%
Micelle
49%
Nanofiber
46%
Chirality
46%
Aqueous Solution
40%
Two-Dimensional Material
39%
Supramolecular Material
34%
Tamoxifen
33%
Porosity
33%
Azobenzene
33%
Lipid
33%
Tetracyanoquinodimethane
33%
Charge Transfer Interaction
30%
Hydrophile
27%
Pyridine
25%
Molecular Chirality
22%
Donor
21%
Hydrogen Bonding
19%
Optoelectronics
19%
Estrogen
18%
Galactosylceramide
16%
Nanoreactors
16%
Cyclic Adenosine Monophosphate
16%
Sphingosine
16%
Catalyst
16%
Afimoxifene
16%
Antimicrobial Agent
16%
Bilayer Membrane
16%
Water Soluble
16%
Carbohydrates
16%
Visible Spectrum
16%
Polarized Luminescence
16%
E Isomer
16%
Cyanuric Acid
16%
macrocyclization
16%
Pore Structure
16%
Iodine Ion
16%
Decarboxylation
16%
1,3-cycloaddition
16%
Polar Solvent
16%
Adenosine
16%
Oxidative Degradation
16%
Concanavalin A
16%
Glucose
16%
Keyphrases
Self-assembly
73%
Aromatics
63%
Amphiphiles
61%
Prodrug Nanoparticles
50%
Cell Membrane
44%
α-galactosylceramide (α-GalCer)
33%
2D Materials
33%
Layer-by-layer Assembly
33%
Supramolecular Sheet
33%
Aqueous Solution
31%
Donor-acceptor Interactions
29%
7,7,8,8-tetracyanoquinodimethane
29%
Pyridine Unit
28%
Cathepsin B
27%
Noncovalent Interactions
25%
Sheet Structure
22%
Chiral Sheets
22%
Supramolecular Materials
21%
Biological Applications
21%
Reversible Switching
21%
Mannose
21%
Highly Flexible
21%
Two-dimensional Systems
21%
Doxorubicin
20%
Cancer Immunotherapy
20%
GalCer
20%
Organic Ligands
20%
Metal Nanoparticles
19%
Functional Materials
19%
Aromatic Amphiphiles
19%
In Cancer
18%
Immunogenic Cell Death
18%
Tumor-specific
18%
Dendron
18%
Hydrogen Bond (H-bond)
17%
Inflation
16%
Helical Peptides
16%
Synthetic Amphiphiles
16%
Textile
16%
Energy Storage Performance
16%
Aromatic Core
16%
Hydrogen Evolution Reaction
16%
Anticancer
16%
Heteroaromatics
16%
Self-healing Elastomers
16%
Peptide Assembly
16%
Ligand Replacement Reaction
16%
Chiral Materials
16%
Estrogen-related Receptor
16%
Aromatic Anions
16%