Self-Separating Biphasic Electrolyte Enables High-Performance Aqueous Zinc-Ion Batteries via Electron-Enriched Interphase Engineering. [PDF]
Yang C +6 more
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Highly luminescent chiral manganese halide crystals are synthesized using chiral ligands, and they exhibit dissymmetry factors up to 1.4 × 10−2 and show X‐ray detection scintillation capability with a light yield of 43 380 photons/MeV and a low detection limit of 0.05198 µGyair·s−1.
Yue Han +9 more
wiley +1 more source
Tailoring Na⁺ Chelation Dynamics for Expedient Sulfur Redox Kinetics in Low-Temperature Sodium-Sulfur Batteries. [PDF]
Pai MH, Manthiram A.
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Decoding polarity gradient enabled ultra-high lithium ion conduction. [PDF]
Chen Y +10 more
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A Comprehensive Molecular Modeling Study of Phenyltriazolinone Derivatives as Protoporphyrinogen Oxidase (PPO) Inhibitors. [PDF]
de Faria AC +3 more
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hnRNP A2B1 as a promising therapeutic target for radiomodulatory drug development: evidence from computational and experimental studies. [PDF]
Lubinets NS +10 more
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Aqueous OH Kinetics of Aliphatic Carboxylic Acids: New Data and Updated Structure-Activity Relationship. [PDF]
Jain P +3 more
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Machine Learning (ML) and Molecular Dynamics-Driven Optimization of VEGFR2 Ligands against Hepatocellular Carcinoma. [PDF]
Yasmeen F, Manan A, Kim W, Choi S.
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The chemical interpretation and practice of linear solvation energy relationships in chromatography
Journal of Chromatography A, 2006This review focuses on the use of linear solvation energy relationships (LSERs) to understand the types and relative strength of the chemical interactions that control retention and selectivity in the various modes of chromatography ranging from gas chromatography to reversed phase and micellar electrokinetic capillary chromatography.
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Theoretical alternatives to linear solvation energy relationships
Computational and Theoretical Chemistry, 1998Abstract Four computational alternatives to the experimentally-based linear solvation energy relationships (LSERs) have been presented and discussed: (a) Famini and Wilson's theoretical linear solvation energy relationship (TLSER); (b) Grigoras' molecular surface interactions (MSI) methodology; (c) the general interaction properties function (GIPF ...
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