Addressing the issues of accelerated charge migration and diminished energy storage performance in polyimide (PI) under a high‐temperature electric field, this study proposes an aggregation‐state regulation strategy through the construction of non‐conjugated nanodomains in PI‐based copolymers. By introducing non‐conjugated polydimethylsiloxane (PDMS) diamine into the PI backbone and leveraging the segmental incompatibility between aromatic PI and PDMS segments, a nanoscale “sea‐island” phase‐separated structure is generated based on the enthalpy‐driven phase separation principle. This tailored heterogeneous structure weakens compact aromatic packing, reduces local electronic coupling between PI‐derived segments, and suppresses long‐range charge migration while simultaneously introducing deep trapping sites at heterogeneous interfaces, thereby synergistically regulating charge diffusion behavior of the PI‐PDMS copolymer. The resultant PI‐PDMS film exhibits outstanding performance over a wide‐temperature range: a dielectric constant of 4.41 with low loss of <0.015 at 100 Hz, a discharged energy density of 16.2 J/cm
3
with efficiency of > 90% at 950 MV/m and 25°C, and 6.6 J/cm
3
with efficiency of > 90% at 600 MV/m and 200°C. This research establishes a fresh paradigm for the design of high‐performance polymer dielectrics through aggregation‐state regulation.
Membrane‐based carbon capture is a pivotal technology for decarbonizing the energy sector, but its practical deployment is currently constrained by the lack of scalable materials capable of delivering the hyper‐permeance required to minimize capital‐intensive membrane area. Here, we report an interface‐engineered,...
Ji Wu, Fan Feng, Bai-Wang Zhao et al.· Advanced Functional Material...· 0 citations
Polyacrylonitrile‐based carbon nanofibers (CNFs) are widely regarded as promising sodium‐storage anodes owing to their high carbon yield/axial conductivity and superior mechanical flexibility. Nevertheless, the ambiguous understandings into the temperature‐dependent micro‐structure evolution, particularly the closed‐...
Min-Yu Jia, Jia-Hui Ye, Hao Jiang et al.· Advanced Energy Materials· 0 citations
Dielectric polymers for high‐temperature capacitive energy storage require both high thermal stability and electrical insulation. Although the rigid conjugated structure of polyimide affords a high glass transition temperature, making it a promising candidate, it also introduces compromised electrical insulation th...
Yu-Ting Wan, Shuo-Tong Wang, Hang Luo et al.· Advanced Functional Material...· 0 citations
ABSTRACT Two‐dimensional (2D) transition‐metal carbides and nitrides (MXenes) exhibit high electronic conductivity, large volumetric capacitance, and excellent mechanical robustness, making them attractive for electrochemical actuators (ECAs). However, the fundamental link between surface chemistry, charge‐storage mech...
Jiang Xu, Jipeng Feng, Bingqing Hu et al.· Advancement of science· 0 citations
Crosslinked polyethylene (XLPE) is the benchmark insulation for high‐voltage direct‐current (HVDC) cables, yet its amorphous phase remains the Achilles' heel—vulnerable to space charge accumulation, oxygen permeation, and thermo‐oxidative degradation that synergistically trigger premature failure. Here, we report a...
Liang Zhang, Guolei Su, J. Liao et al.· Journal of Vinyl and Additiv...· 0 citations
The advancement of nickel‐rich lithium metal batteries is significantly impeded by the trade‐off between ion transport efficiency and electrode/electrolyte interfacial stability. To overcome this limitation, we introduce a 9‐µm‐thick composite quasi‐solid electrolyte MLZPE based on a molecular‐armor‐mediated solvation...