Related Experiment Video
Updated: Jan 8, 2026

Real-Time DC-dynamic Biasing Method for Switching Time Improvement in Severely Underdamped Fringing-field Electrostatic MEMS Actuators
Published on: August 15, 2014
External Electric Field-Assisted TS Vacancy Mediation for Accelerating Dipole Polarization to Enhance Electromagnetic
Lizheng Meng1, Youan Xu2, Shanshan Liang3
1MOE Key Laboratory of Material Physics and Chemistry under Extraordinary Conditions, School of Physical Science and Technology, Northwestern Polytechnical University, Xi'an, 710072, China.
Abstract:
Defect engineering has been widely employed in the design of electromagnetic wave (EMW) absorbing materials by tuning defect types, concentrations, and distributions. Building on these advances, external electric field (EEF) modulation has drawn considerable attention as an emerging strategy, distinguished by its non-contact and dynamic regulation of defect formation. Nevertheless, how to actively guide vacancy formation during synthesis using EEF remains an urgent challenge. Here, an EEF-assisted synthesis strategy that enables the active reconstruction of electronic structures and defect states in Ternary sulfides (TS) is reported. Specifically, the applied EEF lowers the migration barrier of cations (Cu2⁺, Co2⁺) and partially mobilizes S2 -, generating vacancies that induce lattice distortion and redistribute electronic states, thereby enhancing electromagnetic response. When the applied EEF is kept below the critical threshold, it facilitates the cooperative formation of cation and anion vacancies, thereby enhancing charge separation and generating abundant dipole centers. Conversely, once the voltage surpasses this threshold, excessive field energy leads to an increase in defect density, which disrupts local structural order and ultimately weakens polarization. Using CuCo2S4 (CCS) as a model system, the optimized CCS(6,7) achieves an effective absorption bandwidth of 6.51 GHz at a thickness of 1.81 mm under 7 V. Moreover, this strategy shows good generality across various TS systems (NCS, FCS, and MCS). Overall, this work reveals the vacancy-driven dielectric response under EEF modulation and provides a controllable route to tailor defect structures for high performance TS based EMW absorbers.
Related Concept Videos
Induced Electric Dipoles
Since the absolute value of potential energy holds no physical meaning, its zero value can be chosen as per...
Potential Due to a Polarized Object
π Electron Effects on Chemical Shift: Overview
Electric Dipoles and Dipole Moment
Theoretically, studying electric dipoles leads to understanding why the resultant electric forces around us are weak. Since electric forces are strong, remnant net charges are rare. Hence, the interaction between dipoles helps us understand electrical interactions in...
Induced Electric Fields: Applications
Dielectric Polarization in a Capacitor

