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Q.Define IE1 and IE2. Why is IE2 > IE1 for a given atom? Discuss the factors that effect IE of an element.

Andhra Pradesh BieapBIEAP Intermediate Board (1st Year) 2022Subjective· 8mImportance★★★★★
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IE1 removes the first electron from a gaseous atom, IE2 removes the next electron from the resulting cation; IE2 > IE1 due to greater effective nuclear charge and smaller ion size. IE is governed by atomic size, nuclear charge, shielding, orbital penetration and electronic-configuration stability.

Definitions:

  • First ionisation enthalpy (IE1): the minimum energy required to remove the most loosely bound (outermost) electron from an isolated gaseous atom in its ground state. M(g) -> M+(g) + e-; delta H = IE1
  • Second ionisation enthalpy (IE2): the energy required to remove an electron from the gaseous unipositive ion. M+(g) -> M2+(g) + e-; delta H = IE2

Why IE2 > IE1 for a given atom:

After the first electron is removed, the resulting cation M+ has one fewer electron but the same nuclear charge. So each remaining electron experiences a greater effective nuclear charge and the ion is smaller than the neutral atom. The remaining electrons are therefore more tightly held, and more energy is needed to remove the next electron. Hence IE2 is always greater than IE1 (and IE3 > IE2, and so on).

Factors that affect ionisation enthalpy:

  1. Atomic size (radius): larger the atom, the farther the outer electron from the nucleus, the weaker the attraction, so lower the IE. IE decreases down a group as size increases.
  2. Nuclear charge: greater the nuclear charge, the stronger the attraction on the outer electrons, so higher the IE. IE increases across a period.
  3. Screening/shielding effect: inner electrons shield the outer electrons from the nucleus. Greater shielding lowers the effective nuclear charge and decreases IE. …

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