A cholesterol‐conjugated lipid library enabled the identification of a ligand‐free LNP platform for efficient mRNA delivery to brain endothelial cells via systemic administration. This platform achieves selective BBB targeting without disrupting barrier integrity, and enables modulation of neuroinflammation and vascular function without requiring trans‐
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Dual-Path Charge Transport Enables Decoupling of Electrical Performance Under Strain from the Crack Onset Strain in Ion Exchange-Doped Conjugated Polymer Films. [PDF]
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Orbital hybridization engineering, a built-in electric field, and simultaneous carbon layer charge rearrangement boost carrier migration for a superior cathode material. [PDF]
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Hard Carbon Anodes for Sodium-Ion Batteries: Industrial Precursors, Structural Regulation, and Future Prospects. [PDF]
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Failure-mode-oriented design of cathode materials for practical lithium-ion batteries: from crystal stability to electrode-level durability. [PDF]
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Enhanced Ionic Conductivity at the Solid Electrolyte Interphase of Oxygen-Doped Li<sub>6</sub>PS<sub>5</sub>Cl. [PDF]
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Electron Redistribution by Fluorine-Induced Dual Defects in Cu<sub>3</sub>P Accelerated Charge Transfer Toward High-Performance Electrochemical Chloride Ion Removal. [PDF]
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Doping of Glass with Lithium Ion
Analytical Chemistry, 2005Doping of glass with lithium ion can be accomplished by exposing the glass to a solution of organic solvent containing a soluble lithium ion salt, such as LiBr and a small amount of water. Under such conditions, the activity of solvated Li+ is very high causing it to partition into the hydrated glass surface.
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Abstract Longitudinal dopant distribution along ion tracks in soft (polymers [1–5]) and hard (diamond [6,7]) condensed carbonaceous matter have been studied by neutron depth profiling and cathodoluminesence. Both in-diffusion from the aqueous phase and energetic ion implantation were used in primary track doping.
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