Skip to content
Question

Q.Ge is doped with As. Due to doping, (A) the structure of Ge lattice is distorted. (B) the number of conduction electrons increases. (C) the number of holes increases. (D) the number of conduction electrons decreases.

CBSECBSE Class XII Board 2024MCQ· 1mImportance★★★★★
🔒 Locked · start free trial →

You're viewing a preview — the full solution, concept, methods & PYQ mapping are locked.

Start your 14-day free trial to unlock the full solution →

Doping germanium (a group-14 element) with arsenic (a group-15 element) introduces extra valence electrons, increasing the number of conduction electrons. The correct option is (B).

Intrinsic Carrier Concentration — the core idea

In a pure (intrinsic) semiconductor like germanium, every atom forms four covalent bonds with its neighbours. At any temperature above absolute zero, a tiny fraction of these bonds break, creating an equal number of free electrons (in the conduction band) and holes (in the valence band). This balance is described by ni=pin_i = p_i, where nin_i is the intrinsic electron concentration and pip_i the intrinsic hole concentration.

When we dope the crystal, we deliberately replace a few Ge atoms with impurity atoms. The key question is: what happens to the electron and hole counts? The answer depends entirely on whether the impurity has more or fewer valence electrons than the host atom.

Why arsenic is a donor in germanium

Germanium is in group 14 — each atom has 4 valence electrons. Arsenic is in group 15 — each atom has 5 valence electrons. When an As atom sits in a Ge lattice site, four of its five valence electrons form normal covalent bonds with the four neighbouring Ge atoms. The fifth electron is left over; it is only weakly bound to the As ion and, at room temperature, gets enough thermal energy to break free and become a conduction electron.

This process is called donor doping — the impurity donates an electron to the conduction band without creating a hole. The As atom becomes a positively charged ion (As+\text{As}^+) fixed in the lattice.

Step-by-step reasoning

  1. Lattice structure remains intact.

    Doping replaces a tiny fraction of Ge atoms (typically 1 in 10610^6 to 10810^8) with As atoms. Since As is roughly the same size as Ge, the overall diamond cubic lattice is not distorted. The crystal structure stays the same — only the electronic properties change. Option (A) is false.

  2. Donor atoms increase conduction electrons.

    Each As atom contributes one extra free electron. If the doping concentration is NDN_D atoms per cm3^3, then the electron concentration becomes n≈NDn \approx N_D (at moderate temperatures, because the intrinsic contribution nin_i is negligible compared to NDN_D). So the number of conduction electrons increases significantly. Option (B) is true.

  3. Hole concentration decreases (mass-action law). …

Unlock everything free for 14 days

  • Full step-by-step solutions
  • Concept-first explanations
  • Methods, shortcuts & mistakes
  • PYQ mapping + timed mock tests

Full access for 14 days. No credit card required.