Effect of cobalt complex precursors on reactivity of cationic cobalt catalysts: Cyclohexane dehydrogenation

2019 ◽  
Vol 125 ◽  
pp. 108-113 ◽  
Author(s):  
Kittisak Choojun ◽  
Arucha Worathanaseth ◽  
Satu Kuhatasanadeekul ◽  
Teeraporn Kurato ◽  
Supanut Ketaniruj ◽  
...  
Engevista ◽  
2014 ◽  
Vol 17 (2) ◽  
pp. 207
Author(s):  
Rosenir Rita de Cássia Moreira da Silva ◽  
Elisa Jacinto Fernandes ◽  
Hugo Alvarenga Oliveira ◽  
Fabio Barboza Passos

As propriedades catalíticas dos catalisadores de Co/Nb2O5 e de Co/Al2O3 foram avaliadas na desidrogenação/hidrogenólise do cicloexano.  Estudou-se o efeito da temperatura de redução na formação do efeito SMSI para os catalisadores de Co/Nb2O5.  A seletividade da reação variou com o tipo de suporte, teor metálico e o SMSI.  Os principais produtos foram n-hexano, que provem da hidrogenólise do cicloexano, e o benzeno, que provem da desidrogenação.  A seletividade para n-hexano é seriamente afetada na presença do efeito SMSI e pela desativação por coque, confirmando os efeitos geométricos.


Author(s):  
Nicolas Lentz ◽  
Alicia Aloisi ◽  
Pierre Thuéry ◽  
Emmanuel Nicolas ◽  
Thibault Cantat

RSC Advances ◽  
2021 ◽  
Vol 11 (28) ◽  
pp. 17108-17115
Author(s):  
Mahnaz Mirheidari ◽  
Javad Safaei-Ghomi

GO@f-SiO2@Co is a heterogenous catalyst composed of spherical silica particles grafted on the surface of graphene oxide with ethylenediamine ligands and coordination with Co(ii). We assessed the activity of the catalyst for the synthesis of aminonaphthoquinones.


2021 ◽  
Author(s):  
Gisele Westphalen ◽  
Maria A. S. Baldanza ◽  
Antônio José de Almeida ◽  
Vera Maria Martins Salim ◽  
Mônica Antunes Pereira da Silva ◽  
...  

Polymers ◽  
2021 ◽  
Vol 13 (10) ◽  
pp. 1667
Author(s):  
Mikhail Karushev

Fast and reversible cobalt-centered redox reactions in metallopolymers are the key to using these materials in energy storage, electrocatalytic, and sensing applications. Metal-centered electrochemical activity can be enhanced via redox matching of the conjugated organic backbone and cobalt centers. In this study, we present a novel approach to redox matching via modification of the cobalt coordination site: a conductive electrochemically active polymer was electro-synthesized from [Co(Amben)] complex (Amben = N,N′-bis(o-aminobenzylidene)ethylenediamine) for the first time. The poly-[Co(Amben)] films were investigated by cyclic voltammetry, electrochemical quartz crystal microbalance (EQCM), in situ UV‑vis-NIR spectroelectrochemistry, and in situ conductance measurements between −0.9 and 1.3 V vs. Ag/Ag+. The polymer displayed multistep redox processes involving reversible transfer of the total of 1.25 electrons per repeat unit. The findings indicate consecutive formation of three redox states during reversible electrochemical oxidation of the polymer film, which were identified as benzidine radical cations, Co(III) ions, and benzidine di-cations. The Co(II)/Co(III) redox switching is retained in the thick polymer films because it occurs at potentials of high polymer conductivity due to the optimum redox matching of the Co(II)/Co(III) redox pair with the organic conjugated backbone. It makes poly-[Co(Amben)] suitable for various practical applications based on cobalt-mediated redox reactions.


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