Lithium Aluminum Hydride

Lithium aluminum hydride (LiAlH4) is a powerful inorganic reducing agent used in chemistry to convert many oxygen- and nitrogen-containing functional groups into more reduced products. In dry ether solvents, its aluminum-bound hydride ions transfer to electrophilic centers, while subsequent protonation during aqueous workup produces alcohols from aldehydes, ketones, esters, and carboxylic acids, and amines from amides and nitriles. Because lithium aluminum hydride reacts vigorously with water and other protic substances, chemists handle it under anhydrous conditions and control the workup carefully. Its broad reactivity makes it valuable in organic synthesis and functional-group interconversion.

Lithium Aluminum Hydride - Related Videos

Research

JoVE Journal - Engineering

Solid-state Graft Copolymer Electrolytes for Lithium Battery Applications

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2013

Lithium ion batteries employ flammable and volatile organic electrolytes that are suitable for ambient temperature applications. A safer alternative to organic electrolytes are solid polymer batteries. Solid polymer batteries operate safely at high temperatures (>120 °C), thus making them applicable to high temperature applications such as deep oil drilling and hybrid electric vehicles. This paper will discuss (a) the polymer synthesis, (b) the polymer conduction mechanism, and (c) provide...

Construction and Testing of Coin Cells of Lithium Ion Batteries

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Cited by 13 •

2012

A protocol to construct and test coin cells of lithium ion batteries is described. The specific procedures of making a working electrode, preparing a counter electrode, assembling a cell inside a glovebox and testing the cell are presented.

In Situ Neutron Powder Diffraction Using Custom-made Lithium-ion Batteries

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Cited by 7 •

2014

We describe the design and construction of an electrochemical cell for the examination of electrode materials using in situ neutron powder diffraction (NPD). We briefly comment on alternate in situ NPD cell designs and discuss methods for the analysis of the corresponding in situ NPD data produced using this cell.

Education

JoVE Science Education - Engineering

Stress-Strain Characteristics of Aluminum

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2023

Source: Roberto Leon, Department of Civil and Environmental Engineering, Virginia Tech, Blacksburg, VA Aluminum is one of the most abundant materials in our lives, as it is omnipresent in everything from soda cans to airplane components. Its widespread use is relatively recent (1900AD), primarily because aluminum does not occur in its free state, but rather in combination with oxygen and other elements, often in the form of Al2O3. Aluminum was originally obtained from bauxite mineral deposits...

Non-aqueous Electrode Processing and Construction of Lithium-ion Coin Cells

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Cited by 11 •

2016

Non-aqueous electrode processing is central to the construction of coin cells and the evaluation of new electrode chemistries for lithium-ion batteries. A step-by-step guide to the basic practices needed as an electrochemical engineer working with batteries in an academic experimental setting is furnished.

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