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Prof. LI Jianmin

State Key Laboratory of Organic Electronics and Information Displays & Institute of Advanced Materials (IAM), Nanjing University of Posts and Telecommunications

Research Publications & English Decoded Briefs

Showing 2 publications
SCIENCE CHINA Materials2025DOI: 10.1007/s40843-024-3315-0

Free-standing Ti3C2Tx film with customizable impedance matching for absorptive electromagnetic shielding

Flexible absorption-dominant electromagnetic interference (EMI) shielding materials are essential for sensitive electronic devices, yet achieving high absorption and wide bandwidth simultaneously remains challenging. This study reports free-standing multilayer Ti3C2Tx (ML-Ti3C2Tx)/polytetrafluoroethylene (PTFE) composite films fabricated via a roll-to-roll method. The cavity structure of ML-Ti3C2Tx microparticles and the brick-mortar network provide multiple loss mechanisms, enabling customizable impedance matching through film thickness and ML-Ti3C2Tx ratio. The optimized 3.5-mm film with 25 wt% ML-Ti3C2Tx achieves an EMI shielding effectiveness of 70 dB in the X-band with only 0.0004% reflection. The films exhibit exceptional stability, maintaining performance after deformation and extreme low-temperature (−200°C) treatment. These results demonstrate a scalable route for high-performance, flexible EMI shielding materials with ultralow reflection, suitable for telecommunications, automotive, aerospace, and flexible electronics.

SCIENCE CHINA Materials2025DOI: 10.1007/s40843-025-3325-6

Advancements of Innovative Water Electrolyzers for Hydrogen Production

The urgent need for renewable energy has driven rapid advancements in hydrogen production technologies. Among these, water electrolysis for green hydrogen, recognized for its significant environmental benefits, has garnered increasing attention and emerged as a critical technology for achieving carbon neutrality and peak carbon emissions targets. Currently, the mainstream electrolyzers include alkaline water electrolyzers (AWE), proton exchange membrane electrolyzers (PEM), and anion exchange membrane electrolyzers (AEM). However, these technologies face significant challenges in large-scale industrial applications, including high costs, limited hydrogen production efficiency, and insufficient durability. Consequently, the development of innovative electrolyzers that combine high efficiency, low cost, and long lifespan has become imperative. In this review, the innovative design of bipolar membrane electrolyzers is first introduced. Subsequently, several types of advanced electrolyzers are summarized, including semi-vapor electrolyzers, electrolyzers employing flow-engineered three-dimensional electrodes, quasi-gas-phase electrolyzers, and bioinspired structural electrolyzers, and their specific advantages and potential applications are discussed in detail. Following this, this review delves into two key strategies for achieving membrane-free electrolyzers, analyzing their design principles and practical applicability. Last but not least, the challenges faced by the further development of electrolyzers were analyzed, and potential solutions were proposed, aiming to promote breakthrough advancements in hydrogen production through water electrolysis.

Prof. LI Jianmin | Publications & Academic Profile | SinoGreenTech | SinoGreenTech