Results 91 to 100 of about 413 (144)
Some of the next articles are maybe not open access.

Transition metal iodates VI: Preparation and characterization of the larger lanthanide iodates

Journal of Solid State Chemistry, 1975
Abstract In the continuation of this work, the LnIII(IO3)3 xH2O type N compounds (abbreviated xN) of La through Sm were prepared by precipitation, thermal decomposition, and by crystallization from the gel, from ambient and boiling water, and from boiling HNO3.
K. Nassau, J.W. Shiever, B.E. Prescott
openaire   +2 more sources

The Toxicology of Iodate: A Review of the Literature

Thyroid, 2001
Because it is more stable than iodide, most health authorities preferentially recommend iodate as an additive to salt for correcting iodine deficiency. Even though this results in a low exposure of at most 1,700 microg/d, doubts have recently been raised whether the safety of iodate has been adequately documented.
H, Bürgi, T H, Schaffner, J P, Seiler
openaire   +2 more sources

Crystal structure of aluminium iodate–hydrogen iodate–water (1/1/6) and preparation of anhydrous aluminium iodate

J. Chem. Soc., Dalton Trans., 1977
The crystal structure of the title compound has been determined by Patterson and Fourier methods using three-dimensional X-ray data and has been refined by a full-matrix least-squares procedure to R= 0.029 for 2 546 observed reflections. The crystals are hexagonal, space group P63 with a= 16.107(2), c= 12.378(2)A, Z= 6.
Peter D. Cradwick, Andrew S. de Endredy
openaire   +1 more source

Growth of single crystals of barium iodate and strontium iodate in silica gels

Kristall und Technik, 1981
AbstractSingle crystals of iodates of barium and strontium grown by gel method are reported. Optimum conditions for good quality single crystals are worked out. Different habits of these crystals are reported. A brief report for characterization of these crystals by different methods is given.
M. S. Joshi, S. G. Trivedi
openaire   +1 more source

Microbial Reduction of Iodate

Water, Air, and Soil Pollution, 1997
The different oxidation species of iodine have markedly different sorption properties. Hence, changes in iodine redox states can greatly affect the mobility of iodine in the environment. Although a major microbial role has been suggested in the past to account for these redox changes, little has been done to elucidate the responsible microorganisms or ...
Lovley, Derek   +2 more
openaire   +1 more source

Polymorphism of lithium iodate

Materials Research Bulletin, 1971
Thermal behaviours of α- and β-LiIO3 were studied by DTA and high temperature X-ray diffraction and a new phase was found between α- and β-LiIO3. Under normal pressure, the α-phase transforms into this new phase at about 247°C associated with an endothermic reaction, followed by an exothermic transformation to the β-phase at about 285°C.
openaire   +1 more source

The Conductance of Potassium Iodate at 25° and the Mobility of the Iodate Ion

Journal of the American Chemical Society, 1942
K. A. Krieger, Martin Kilpatrick
openaire   +1 more source

A review on the advancements in the characterization of the high-pressure properties of iodates

Progress in Materials Science, 2023
Robin Turnbull   +2 more
exaly  

Iodine-Potassium Iodate

2001
(I2) [7553-56-2] I2 (MW 253.80) InChI = 1S/I2/c1-2 InChIKey = PNDPGZBMCMUPRI-UHFFFAOYSA-N (KIO3) [7758-05-6] IKO3 (MW 214.00) InChI = 1S/HIO3.K/c2-1(3)4;/h(H,2,3,4);/q;+1/p-1 InChIKey = JLKDVMWYMMLWTI-UHFFFAOYSA-M (conversion of alkenes to iodohydrins;1 iodination of some aromatic molecules;2 the iodohydrins (or ...
openaire   +1 more source

Home - About - Disclaimer - Privacy