نتایج جستجو برای: cobalt compounds

تعداد نتایج: 255416  

Journal: :Dalton transactions 2012
Debajit Sarma Vishwas Srivastava Srinivasan Natarajan

A hydrothermal reaction of a mixture of cobalt salt, 5-nitro isophthalic acid and triazole (compound I), 3-aminotriazole (3-AT) (compound II) and 3,5-diaminotriazole (compound III) at 220 °C for a day resulted in the isolation of three different, but related, compounds containing cobalt clusters. The three-dimensional compounds have Co(5) (compound-I) and Co(4) (compound-II and compound-III) cl...

Journal: :Dalton transactions 2013
Xue-Zhi Song Shu-Yan Song Min Zhu Zhao-Min Hao Xing Meng Shu-Na Zhao Hong-Jie Zhang

Hydrothermal reaction of a tripodal bridging ligand, 5-(4-carboxyphenoxy)isophthalic acid (H3cpia) with cobalt salts modulated by N-donor neutral ligands leads to the formation of six novel coordination networks formulated as {[Co(1.5)(cpia)(o-bix)](H2O)(1.5)}n (1), {[Co2(cpia)(μ-OH)(m-bix)]H2O}n (2), {[Co(1.5)(cpia)(m-bix)]}n (3), {[Co(1.5)(cpia)(p-bix)(0.5)(H2O)]H2O}n (4), {[Co(2.5)(cpia)(Hcp...

Journal: :The Journal of biological chemistry 1948
J M ORTEN M C BUCCIERO

The fact that cobalt administered daily in small amounts either orally or parenterally will produce a polycythemia is now well established. The polycythemia has been produced in a number of species of animals, including the rat, mouse, rabbit, dog, duck, and frog, and is characterized by an increase in the erythrocyte count and hemoglobin and hematocrit values without any significant alteration...

Journal: :Journal of the American Chemical Society 2010
Jaeheung Cho Ritimukta Sarangi Hye Yeon Kang Jung Yoon Lee Minoru Kubo Takashi Ogura Edward I Solomon Wonwoo Nam

Metal-dioxygen adducts are key intermediates detected in the catalytic cycles of dioxygen activation by metalloenzymes and biomimetic compounds. In this study, mononuclear cobalt(III)-peroxo complexes bearing tetraazamacrocyclic ligands, [Co(12-TMC)(O(2))](+) and [Co(13-TMC)(O(2))](+), were synthesized by reacting [Co(12-TMC)(CH(3)CN)](2+) and [Co(13-TMC)(CH(3)CN)](2+), respectively, with H(2)O...

پایان نامه :وزارت علوم، تحقیقات و فناوری - دانشگاه تهران 1387

چکیده ندارد.

Journal: :Dalton transactions 2014
Kangcai Wang Daibing Luo Dingguo Xu Furong Guo Lin Liu Zhien Lin

Presented here are two novel open-framework cobalt sulfate-oxalates constructed from molecular and chain-like building blocks. The two compounds have different structures: an hcb-type layer with 20-ring windows and a mog-type framework with 12-ring channels. Amine molecules play dual roles in the two structures: as a chelating ligand and a charge-balancing agent.

2015
Ji-Quan Sun Lian Xu Li-Juan Wang Xiao-Lei Wu

Rhodococcus sp. Chr-9 can degrade pyridine in the presence of chromate. Its draft genome sequence revealed that strain Chr-9 harbors sets of genes for resistance to heavy metals such as lead, mercury, arsenate, and cobalt, as well as three different gene clusters for metabolizing aromatic compounds, such as phenol, benzoate, and 4-nitrophenol.

Journal: :Organic letters 2015
Andrei V Iosub Shannon S Stahl

Dehydrogenation of (partially) saturated heterocycles provides an important route to heteroaromatic compounds. A heterogeneous cobalt oxide catalyst, previously employed for aerobic oxidation of alcohols and amines, is shown to be effective for aerobic dehydrogenation of various 1,2,3,4-tetrahydroquinolines to the corresponding quinolines. The reactions proceed in good yields under mild conditi...

A. Hassanzadeh B. Shaabani E. Hobbolahi M. Alem S. Hedayati,

One of the best and the most active ways for surveying thermal behaviour of materials is using differential scanning calorimetry. In this paper, the authors have studied thermal behaviour for Schiff base ligand and their synthesized Cobalt, Nickel complexes. In this method, the sample is opposed to a controlled temperature change and its physical properties. Here we studied melting point and Tg...

Journal: :Dalton transactions 2015
Justin K Pagano John P W Stelmach Rory Waterman

Two cobalt compounds, Cp*Co(CO)I2 (1) and CpCo(CO)I2 (2) (Cp* = η(5)-C5Me5, Cp = η(5)-C5H5), catalyze the dehydrogenation of ammonia borane under either anaerobic or aerobic conditions and are also effective hydrogenation catalysts for alkenes and alkynes using ammonia borane as a hydrogen source, also in the presence of air.

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