electron rich hydrides

Electron rich hydrides

N H 3 is electron rich hydride. Describe electron-rich hydride. Which of the following hydrides is an electron-rich hydride?

Define the following terms: a electron-deficient b electron - precise c electron-rich compound. Justify your answer with an example? Example: CH 4 , SiH 4 , etc. What do you understand by i electron-deficient, ii electron-precise, and iii electron-rich compounds of hydrogen? Provide justification with suitable examples.

Electron rich hydrides

Hydrides - Hydrides are the binary compound of hydrogen with other elements. Let 'X" be any element, then -. Ex - MgH 2 is the hydride of Magnesium. Based upon the number of electrons and bond type covalent or molecular hydrides are classified into -. So, match each hydrides accordingly we get, a - iv , b - i , c - ii , d - iii. Last updated on Jan 2, Get Started. SSC Exams. Banking Exams. Teaching Exams. Civil Services Exam. Railways Exams. Engineering Recruitment Exams.

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Hydride , in simple terms, is said to be the anion of hydrogen. It is a chemical compound where the hydrogen atoms exhibit nucleophilic, basic or reducing properties. Compounds of hydrogen with less electronegative elements are known as hydrides. So, when hydrogen reacts with any other element, the product formed is considered to be a hydride. If we closely observe the periodic table, hydride formation is not seen from VA group elements, and this condition is known as the hydride gap.

Electron rich hydrides

Hydrides are binary compounds of hydrogen. In which hydrogen remain as the anion or negatively charged ion H —. Its general formula is MH x or M x H y. Metals of groups- 7, 8 and 9 hardly form hydrides and thus the region group- 7 to 9 in periodic table is known as hydride gap. These hydrides are formed when hydrogen combines with elements which possess electronegativity value lower than that of hydrogen 2. Thus all alkali metals and alkaline earth metals can form ionic hydrides by transferring one electron from the metal ion to hydrogen atom. Ionic hydrides can be prepared directly on passing hydrogen gas over alkali metals or alkaline earth metals heated at 0 C under pressure. Due to the exothermic nature of the reaction, the evolved hydrogen catches fire. They are alloys or interstitial solid solutions of hydrogen in metals. These hydrides exhibit properties similar to those of the parent metal and hence are called metallic hydrides.

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