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Predictive cartography of metal binders using generative topographic mapping to visualize the chemical space of organic molecules (L) with respect to binding a wide range of 41 different

Chalcogen and Hydrogen Bonds at the Periphery of Arylhydrazone Metal Complexes. Both interactions undergo major changes on ligand binding to the metal even though metal-ligand binding

Carboxyl groups do not play the major role in binding metal cations by graphene oxide, strongly suggests that carboxyl groups do not play the main role in binding metal ions by GO

X-ray photoelectron spectra of ruthenium(II) phthalocyanines phthalocyanines were measured and the collected data on the core-level binding energies of ruthenium have been

Analysis of competitive binding of several metal cations by graphene oxide reveals the quantity and spatial distribution of carboxyl groups on its surface
© 2018 the Owner Societies. The sorption capacity of graphene oxide (GO) toward different metal

Comparative analysis of the binding of thiacalix[4]arene-monocrown-ethers with monovalent metal salts using MALDI mass spectrometry assessment of the binding of thiacalix[4]arene-monocrown-ethers with metal cations (Li, Na, K, Cs, Cu, Ag

Reversible activated adsorption of gases on metals model of reversible activated adsorption of gases was proposed. According to this model, mobile metal

Predictive cartography of metal binders using generative topographic mapping to visualize the chemical space of organic molecules (L) with respect to binding a wide range of 41 different

Comparative analysis of the binding of thiacalix[4]arene-monocrown-ethers with monovalent metal salts using MALDI mass spectrometry assessment of the binding of thiacalix[4]arene-monocrown-ethers with metal cations (Li, Na, K, Cs, Cu, Ag

Positron trapping at quantum-dot-like particles on metal surfaces binding energy and annihilation characteristics reveal their strong sensitivity to the nanoparticle

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