Related Experiment Video
Updated: Sep 10, 2025

Probing the Structure and Dynamics of Interfacial Water with Scanning Tunneling Microscopy and Spectroscopy
Published on: May 27, 2018
In situ atomic-resolution imaging of water vapor-driven multistep oxidation dynamics in strontium cobaltite
Zhenzhong Yang1,2, Ke Qu1, Yifeng Zhao1
1Key Laboratory of Polar Materials and Devices, Department of Electronics, East China Normal University, Shanghai 200241, China.
Abstract:
Understanding how water vapor interacts with transition metal oxides (TMOs) is critical for tailoring material properties to improve performance and enable new technologies. Despite extensive research efforts, atomic-scale mechanisms underpinning dynamic reactions and reaction-induced phase transitions remain elusive. Here, we use in situ environmental transmission electron microscopy to investigate how water vapor oxidizes vacancy-ordered SrCoO2.5 at moderately elevated temperatures, demonstrating that water molecules can initiate oxidation more effectively than oxygen under comparable conditions. We discover a distinct "staging" behavior during the oxidation process: A fully ordered intermediate phase, SrCoO2.75, forms before transitioning into a near-perovskite SrCoO3-δ. In addition, antiphase boundaries, originating at step terraces of SrTiO3, alleviate strain by creating reversible nanoscale "gaps" during lattice contraction under oxidation, providing a pathway for preserving structural integrity throughout redox cycling. This work provides atomic-level guidance for engineering TMOs by leveraging water vapor to control their redox behavior and tailor functional properties.
More Related Videos
14:21Performing In Situ Closed-Cell Gas Reactions in the Transmission Electron Microscope
Published on: July 24, 2021
11:38In situ FTIR Spectroscopy as a Tool for Investigation of Gas/Solid Interaction: Water-Enhanced CO2 Adsorption in UiO-66 Metal-Organic Framework
Published on: February 1, 2020
Related Concept Videos
Atomic Absorption Spectroscopy: Atomization Methods
Atomic Fluorescence Spectroscopy
Atomic Spectroscopy: Effects of Temperature
At thermal equilibrium, the relative populations of excited and ground state atoms can be estimated using the Maxwell–Boltzmann distribution. For example, an increase in temperature...
Atomic Force Microscopy
The AFM Probe
The probe is regarded as the heart of any AFM setup and comprises the...
Atomic Emission Spectroscopy: Overview
Atomic Emission Spectroscopy: Lab