Synthesis and Electrocatalytic Properties of Structure Engineered First-row Transition Metal Derivatives

Synthesis and Electrocatalytic Properties of Structure Engineered First-row Transition Metal Derivatives PDF Author: Xiaodong Yan
Publisher:
ISBN:
Category : Electrocatalysis
Languages : en
Pages : 20

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Book Description
Hydrogen is a green energy carrier, producing only water when combusted, and a hydrogen economy has been considered the ideal green economy for human society. Water electrolysis can produce high-purity hydrogen on a large scale, and if the electricity used in water electrolysis is obtained from renewable energy, a sustainable energy chain can be achieved. Fuel cell technology offers a highly efficient way of converting chemical energy from a fuel into electricity through an electrochemical reaction. Fuel cells are expected to be one of the mainstream energy conversion devices for many applications such as the transportation and portable electronic systems. Hydrogen fuel cell technology is, of course, the ideal choice. However, the hydrogen storage is still a big challenge due to its gaseous nature, extremely low boiling point, and high inflammability. While advanced hydrogen storage technology is under development, fuel cells using liquid fuels (e.g. hydrazine) need to be developed. The key to both water electrolysis and fuel cells is the electrocatalyst. Currently, the noble metal based materials are still the state-of-the-art electrocatalysts for water electrolysis and in fuel cells in terms of catalytic activity and catalyst durability. However, their scarcity and high price hinder their widespread commercial use. Therefore, it is imperative to develop earth-abundant, low-cost electrocatalyst materials that have high catalytic activity comparable to or even better than the noble metal based electrocatalysts. Nowadays, the research emphasis of earth-abundant electrocatalysts is thus primarily placed on enhancing the catalytic activity or lowering the overpotential that is needed to drive the electrochemical reactions. The catalytic performance of an electrocatalyst is associated with its surface area, near-surface structure, electronic structure, conductivity, crystal size, etc. Rational structural modification of the electrocatalyst materials and/or architectural design of the catalyst electrodes can help enlarge the surface area, increase the active sites, tune the electronic structure and conductivity, and so on. In this dissertation, a series of strategies (e.g. hydrogenation, solvothermal reduction, and electrochemical tuning) have been developed to fabricate structure-tuned electrocatalyst materials for electrochemical water splitting and electro-oxidation of hydrazine. Well-defined Co/Co3O4 and Co/CoO core-shell heterostructures have been found to be highly active towards hydrogen evolution reaction (HER) and hydrazine oxidation, respectively. FeNi3/NiFeOx nanohybrids have been thoroughly characterized for HER and oxygen evolution reaction (OER). Nano-on-micro Cu has been explored as a highly efficient catalyst towards electro-oxidation of hydrazine. Cobalt hydroxide carbonate with rich grain boundaries has been shown to be a highly efficient non-metallic electrocatalyst towards hydrazine oxidation.

Synthesis and Electrocatalytic Properties of Structure Engineered First-row Transition Metal Derivatives

Synthesis and Electrocatalytic Properties of Structure Engineered First-row Transition Metal Derivatives PDF Author: Xiaodong Yan
Publisher:
ISBN:
Category : Electrocatalysis
Languages : en
Pages : 20

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Book Description
Hydrogen is a green energy carrier, producing only water when combusted, and a hydrogen economy has been considered the ideal green economy for human society. Water electrolysis can produce high-purity hydrogen on a large scale, and if the electricity used in water electrolysis is obtained from renewable energy, a sustainable energy chain can be achieved. Fuel cell technology offers a highly efficient way of converting chemical energy from a fuel into electricity through an electrochemical reaction. Fuel cells are expected to be one of the mainstream energy conversion devices for many applications such as the transportation and portable electronic systems. Hydrogen fuel cell technology is, of course, the ideal choice. However, the hydrogen storage is still a big challenge due to its gaseous nature, extremely low boiling point, and high inflammability. While advanced hydrogen storage technology is under development, fuel cells using liquid fuels (e.g. hydrazine) need to be developed. The key to both water electrolysis and fuel cells is the electrocatalyst. Currently, the noble metal based materials are still the state-of-the-art electrocatalysts for water electrolysis and in fuel cells in terms of catalytic activity and catalyst durability. However, their scarcity and high price hinder their widespread commercial use. Therefore, it is imperative to develop earth-abundant, low-cost electrocatalyst materials that have high catalytic activity comparable to or even better than the noble metal based electrocatalysts. Nowadays, the research emphasis of earth-abundant electrocatalysts is thus primarily placed on enhancing the catalytic activity or lowering the overpotential that is needed to drive the electrochemical reactions. The catalytic performance of an electrocatalyst is associated with its surface area, near-surface structure, electronic structure, conductivity, crystal size, etc. Rational structural modification of the electrocatalyst materials and/or architectural design of the catalyst electrodes can help enlarge the surface area, increase the active sites, tune the electronic structure and conductivity, and so on. In this dissertation, a series of strategies (e.g. hydrogenation, solvothermal reduction, and electrochemical tuning) have been developed to fabricate structure-tuned electrocatalyst materials for electrochemical water splitting and electro-oxidation of hydrazine. Well-defined Co/Co3O4 and Co/CoO core-shell heterostructures have been found to be highly active towards hydrogen evolution reaction (HER) and hydrazine oxidation, respectively. FeNi3/NiFeOx nanohybrids have been thoroughly characterized for HER and oxygen evolution reaction (OER). Nano-on-micro Cu has been explored as a highly efficient catalyst towards electro-oxidation of hydrazine. Cobalt hydroxide carbonate with rich grain boundaries has been shown to be a highly efficient non-metallic electrocatalyst towards hydrazine oxidation.

Synthesis, Structure, Magnetic and Electronic Properties of Heterometallic Complexes Containing First-Row Transition Metals

Synthesis, Structure, Magnetic and Electronic Properties of Heterometallic Complexes Containing First-Row Transition Metals PDF Author: Tao Huang
Publisher:
ISBN:
Category :
Languages : en
Pages : 303

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Chemistry of the First Row Transition Metals

Chemistry of the First Row Transition Metals PDF Author: Jon A. McCleverty
Publisher:
ISBN: 9780191992971
Category : Transition metals
Languages : en
Pages : 0

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Book Description
'Chemistry of the First Row Transition Metals' introduces this field of chemistry. The reactivity and structural properties of first-row transition metals and their compounds depend on the electronic configuration of the d electrons of the metal. The book describes the most significant structures, reactions, and other important properties of co-ordination, organometallic and solid-state compounds, and also sketches the role of first-row transition metals in biology.

Synthesis, crystal structure and properties of transition metal (TE

Synthesis, crystal structure and properties of transition metal (TE PDF Author: Zhi-Sheng Lin
Publisher:
ISBN:
Category :
Languages : zh-CN
Pages : 131

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Book Description


Synthesis and Characterization of Complexes of First Row Transition Metals with a Linear Potentially Hexadentate Schiff Base Ligand

Synthesis and Characterization of Complexes of First Row Transition Metals with a Linear Potentially Hexadentate Schiff Base Ligand PDF Author: Justin C. Biffinger
Publisher:
ISBN:
Category : Complex compounds
Languages : en
Pages : 152

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Book Description
Describes the synthesis and structure of mononuclear M(III) complexes and what factors control the stereochemistry.

First-row Transition Metal Coordination Compounds for the Electrocatalytic Generation of Hydrogen from Organic and Aqueous Solutions

First-row Transition Metal Coordination Compounds for the Electrocatalytic Generation of Hydrogen from Organic and Aqueous Solutions PDF Author: Patrick M. Crossland
Publisher:
ISBN:
Category : Electrocatalysis
Languages : en
Pages : 148

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Book Description
The development of stable proton reduction catalysts is imperative due to their importance as a source of a carbon-neutral fuel. A cobalt-salen complex with electron withdrawing groups was synthesized. This complex generated protons from organic solutions at a 190 mV overpotential with a kobs of 42000 M-2s-1, and a corresponding turnover frequency of 420 s-1. This is one of the lowest overpotentials reported for a cobalt proton reduction catalyst. While insoluble in water, an experiment where water was added to an electrochemical cell showed a 20% increase in catalytic activity. This indicates that cobalt-salen complexes could be highly active in aqueous solutions. Developing first row transition metal complexes for electro- and photocatalytic hydrogen evolution is of great interest. A photocatalyst for proton reduction could be incorporated into an artificial photosynthesis device to generate hydrogen gas as a solar fuel. Nickel was complexed with the H3ttfasbz ligand, which is known to be redox active.35 In order to assess its catalytic ability electrochemical tests, including proton concentration experiments, and catalyst concentration experiments were performed. These tests showed the nickel complex to be highly active for hydrogen reduction at a cathodic potential (-1.37 V vs. SCE). Due to the high overpotential of this complex, it was integrated into a photocatalytic system with fluorescein as a chromophore.

Engineering, Science, and Sustainability

Engineering, Science, and Sustainability PDF Author: Dimitrios A Karras
Publisher: CRC Press
ISBN: 1003819532
Category : Political Science
Languages : en
Pages : 283

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Book Description
ISC 2022 is dedicated to the Niti Aayog policies to promote sustainability through exchange of ideas emerging out of the academia. The ISC is an annual conference that is held in virtual mode until COVID restrictions on travel exist. The vision of the conference is to capacitate Academia with the necessary ideas that provide insights of the grassroot level development to various stakeholders of the Niti-Aayog policies. Towards this goal, the conference creates a conjunction of various stakeholders of Niti-Aayog policies that include- academic institutions, government bodies, policy makers and industry. The ISC organizers make concerted efforts to promote academic research that would technological, scientific, management & business practices, and insights into policy merits & disruptions. The framework of exchange of ideas is geared towards adoption of deep technologies, fundamental sciences & engineering, energy research, energy policies, advances in medicine & related case studies. This framework enables the round table discussions between the academia, industry and policy makers through its range of plenary and keynote speakers.

Immobilized Catalysts

Immobilized Catalysts PDF Author: Andreas Kirschning
Publisher: Springer
ISBN: 3540398929
Category : Science
Languages : en
Pages : 341

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Book Description
Over the last decade the environmental setup has changed for synthetic organ ic chemists to a considerable degree. So far synthetic organic chemistry had focussed on methodology development which mainly deals with the develop ment of new reactions as well as new reagents and catalysts. These ought to be able to perform preferentially highly selective (chemo-, regio-and stereose lective) synthetic transformations, often applied in the context of complex and highly functionalized molecules. Except for the synthesis of peptides and oligonucleic acids, little attention has been spent on the question of how synthesis can be carried out in an envi ronment of sophisticated technologies which includes improved hardware. While peptides and oligonucleotides are conveniently prepared by Merrifield's solid phase technique, solution phase synthesis of most other synthetic targets have not been substantially replaced by this solid phase approach. Without discussing this aspect in detail it is obvious that today a renaissance of sophis ticated solution phase synthesis can be noted. Immobilization of reagents and particularly catalysts, an old concept indeed, recently returned back onto the stage and this is addressed in this volume of Topics in Current Chemistry in a broader sense.

Dissertation Abstracts International

Dissertation Abstracts International PDF Author:
Publisher:
ISBN:
Category : Dissertations, Academic
Languages : en
Pages : 816

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Book Description


Molecular Catalysts for CO2 Fixation/Reduction

Molecular Catalysts for CO2 Fixation/Reduction PDF Author: Hitoshi Ishida
Publisher: Frontiers Media SA
ISBN: 2889636224
Category :
Languages : en
Pages : 164

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Book Description