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In this work, we describe a metal plasma immersion approach in which pure and macro-particle free implantation (metal and/or gas ions), pure deposition without ion implantation, or dynamic metal ion beam assisted deposition and gaseous plasma immersion ion implantation (DIBAD metal and gas plasma immersion) can be obtained.
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4. "Self-Healing Multiphase Polymers via Dynamic Metal-Ligand Inter-actions" J. Am.
They play with a ferocious intensity that takes the heavy, dynamic, metal-blues of their self-titled debut album to another, ear-splitting, head-banging level.
In this work, we report the synthesis of iron (III) containing hydroxyethyl cellulose based hydrogel (HEC/PAA-Fe3+) through dynamic metal-ligand (M-L) interactions with enhanced self-healing and mechanical properties.
This review article describes preparation methods for new catalytic materials, approach to dynamic catalyst design, chemistry by designed catalyst surfaces, and dynamic behavior of active metal sites in catalysis.
We are developing activity-based sensing (ABS) probes and related chemical tools for imaging dynamic transition metal pools by fluorescence, bioluminescence and MRI, as well as for proteomic identification and characterization of new metalloprotein targets.
We provide three recent examples from our laboratory and collaborations in which labile copper contributes to physiology to illustrate the breadth of dynamic transition metal regulation.
We have also analyzed various states in surface diffusion of COad on bimetal clusters supported on (TiO2)n and observed considerable dynamic widening of metal-to-metal atom distances induced by CO adsorption (up to 9% for Pt Pt distance and up to 15% for Fe Fe distance).
In addition, many proteins bind metals, and their abundance and localization leads to dynamic changes in metal content.
Temperature plays a significant role in the dynamic uptake of metal ions, the transformation of surface complexation structures and the stability of various metal precipitates (Yang et al. 2011a).
Chemical forms of copper, cadmium and lead in the rhizosphere of several plant species were investigated using rhizobox cultivation, sequential extraction and a set of specially designed experiments to examine dynamic changes in metal fractionation and bioavailability in the rhizosphere, and to experimentally evaluate the factors governing the variation in metal fractionation.
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