Related Experiment Video
Updated: May 16, 2025

Chemical Synthesis of Porous Barium Titanate Thin Film and Thermal Stabilization of Ferroelectric Phase by Porosity-Induced Strain
Published on: March 27, 2018
Giant Negative Thermal Expansion Induced by Topological Phase Transition in a Potassium Zinc Phosphate Material
Ling Chen1, Xin Liu1, Yi-Chang Yang1
1College of Chemistry, Beijing Normal University, Beijing, 100875, P.R. China.
Abstract:
Negative thermal expansion (NTE) materials exhibit the counterintuitive property of volume contraction upon heating, which is critical for precision engineering applications. While significant progress has been made in NTE material discovery and mechanism understanding, developing cost-effective systems with strong NTE effects remains challenging. Here we report that an economical phosphate material, KZn(PO3)3, which demonstrates a record-breaking volumetric contraction (ΔV/V = -11.49%) during its low-temperature to high-temperature phase transition. This exceptional NTE behavior originates from an unprecedented topological phase transition involving structural reorganization from infinite (PO4)∞-chains (C∞ symmetry) to discrete P3O9-rings (C3 symmetry). The variable-cell nudged elastic band, ab initio molecular dynamics, and self-consistent phonon calculations reveal a threefold mechanism: (1) reduced K-K distance minimize electrostatic repulsion, (2) covalent bond rearrangement enables the chain-to-ring transformation, and (3) pronounced vibrational modes of O1 atoms destabilize the anionic chains, promoting their cleavage. Concurrently, these cooperative effects drive the observed giant NTE, while the resulting hexagonal-closed-packed (hcp) K+ sublattice further enhances structural contraction.
Related Concept Videos
Thermal Strain
Phase Transitions
Phase Transitions: Melting and Freezing
Phase Changes
A substance melts or freezes at a temperature called its melting point and boils or condenses at its boiling point. These temperatures depend on pressure. High pressure favors the denser form of the substance, so typically, high pressure...
Thermal Expansion
States of Matter and Phase Changes

