Q.Define the term ionization enthalpy. Why ionization enthalpy of Be is more than B?
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Start your 14-day free trial to unlock the full solution →Ionization enthalpy is the energy needed to remove an electron from a gaseous atom; Be > B because Be's filled 2s2 subshell is extra-stable, while B's lone 2p electron is easier to remove.
Definition: Ionization enthalpy (or ionization energy) is the minimum amount of energy required to remove the most loosely bound (outermost) electron from an isolated gaseous atom in its ground state, converting it into a gaseous cation:
X(g) -> X+(g) + e-, Delta-i H (always positive/endothermic)
Why IE(Be) > IE(B):
Electronic configurations: Be = 1s2 2s2; B = 1s2 2s2 2p1.
Normally, ionization enthalpy increases left to right across a period because nuclear charge increases. On this basis one might expect B (higher nuclear charge, Z=5) to have a higher ionization enthalpy than Be (Z=4). However, the actual trend is reversed here because of subshell stability:
- In Be, the electron being removed comes from a completely filled 2s subshell (2s2). A fully-filled subshell has extra stability (due to symmetrical charge distribution and greater exchange energy), so it resists having an electron removed, raising the ionization enthalpy. …
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