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- Controlling electron transfer through the manipulation of structure and ligand-based torsional motions: a computational exploration of ruthenium donor-acceptor systems using density functional theory.
- Controlling electron-ion rescattering in two-color circularly polarized femtosecond laser fields
- Controlling energy transfer processes and engineering luminescence efficiencies with low dimensional doping
- Controlling Exciton/Exciton Recombination in 2-D Perovskite Using Exciton-Polariton Coupling
- Controlling for Lexical Closeness in Survey Research: A Demonstration on the Technology Acceptance Model
- Controlling Heterogeneous Catalysis with Organic Monolayers on Metal Oxides
- Controlling land they call their own: access and women's empowerment in Northern Tanzania
- Controlling Long-Lived Triplet Generation from Intramolecular Singlet Fission in the Solid State
- Controlling Nanoscale Properties of Supported Platinum Catalysts through Atomic Layer Deposition
- Controlling network structure in degradable thiol-acrylate biomaterials to tune mass loss behavior
- Controlling neuropathic pain by adeno-associated virus driven production of the anti-inflammatory cytokine, interleukin-10
- Controlling Nonsequential Double Ionization in Two-Color Circularly Polarized Femtosecond Laser Fields
- Controlling Nucleation and Crystallization in Solution-Processed Organic Semiconductors for Thin-Film Transistors
- Controlling optical fields in space and time for IR and Raman nano-imaging and -spectroscopy
- Controlling Optical Response of Opal/Ge2Sb2Te5 Hybrid Film Structures
- Controlling pathological pain by adenovirally driven spinal production of the anti-inflammatory cytokine, interleukin-10
- Controlling poly(β-amino ester) network properties through macromer branching
- Controlling Polymer Morphology in Blade-Coated All-Polymer Solar Cells
- Controlling Solution-Phase Polymer Aggregation with Molecular Weight and Solvent Additives to Optimize Polymer-Fullerene Bulk Heterojunction Solar Cells
- Controlling spin ordering in frustrated magnets via thin film heteroepitaxy
- Controlling Stem Cell Fate with Material Design
- Controlling surface crowding on a Pd catalyst with thiolate self-assembled monolayers
- CONTROLLING THE ABANDONMENT OF AUTOMOBILES - MANDATORY DEPOSITS VS FINES
- Controlling the Cell-Adhesion Properties of Poly(acrylic acid)/Polyacrylamide Hydrogen-Bonded Multilayers
- Controlling the Competition between Optically Induced Ultrafast Spin-Flip Scattering and Spin Transport in Magnetic Multilayers
- Controlling the electronic structure of graphene using surface-adsorbate interactions
- Controlling the field-effect mobility of regioregular polythiophene by changing the molecular weight
- Controlling the flow of light with silicon nanostructures
- Controlling the Hyperfine State of Rovibronic Ground-State Polar Molecules
- Controlling the Microstructure of Solution-Processable Small Molecules in Thin-Film Transistors through Substrate Chemistry