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Both complexes are found to catalyze Suzuki cross-coupling reactions of deactivated and even bulky arene substrates.
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Diffusion coefficient ratios between oxidation and reduction species for both complexes were found to be close to 1. Plots of diffusion coefficients versus inverse viscosity deviate from expected linearity, especially for ILs with different kind of anions, suggesting that anions of the ILs contribute to the values of diffusion coefficients.
Both complexes were found to be potently cytotoxic against two human leukemia cell lines, HL60 and MOLM-13, in the micromolar range.
The solid state CD recorded for 1 and the dehydrated form of 2 exhibit a positive optical sign at their respective d d band [λmax = 667 nm, 1; λmax = 630 nm, 2], the solution state CD for both these complexes are found to be inverted into a negative optical sign, which could be attributed to inversion of their associated supramolecular helicity.
Both of these pigment membrane protein complexes are found in cyanobacteria, algae, and plants.
Exosome complexes are found in both eukaryotic cells and archaea, while in bacteria a simpler complex called the degradosome carries out similar functions.
All the complexes are found to stable with 1 1 stoichiometry.
These complexes are found to be thermodynamically stable against dissociation into LiBH4 and borane.
The complexes are found to be photoluminescent, porous and show significant thermal stability.
Cation anion interactions in perchlorate complexes are found to be extremely weak.
Large amounts of stable C O complexes are found to form during the reaction.
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