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LM
Verified CAS / Academic Author2 Decoded Studies

Prof. LI Meng-Ying

SinoGreenTech Intelligence Archive (affiliated with Chinese Academy of Sciences research institutes)

Research Publications & English Decoded Briefs

Showing 2 publications
SCIENCE CHINA Materials2026DOI: 10.1007/s40843-025-3451-2

Organic Solar Windows with Full Visual Aesthetics

Visual aesthetics is a key metric of semi-transparent organic photovoltaics (ST-OPVs) for building-integrated solar windows, yet previous studies have primarily focused on the compromise between efficiency and transparency. This work addresses the overlooked aspect of full visual aesthetic control, particularly the bidirectional reflected color for architectural harmony, via designing ST-OPVs with double-sided ultra-thin Ag/TeO2 transparent electrodes. This design facilitates full-spectrum color tunability covering the whole standard color gamut of CIE coordinates on both surfaces, achieved simply by adjusting layer thicknesses. The resulting devices exhibit neutral transparency (16.6%–27.0% average visible transmittance) and competitive power conversion efficiencies (8.1%–9.2%). Additionally, the devices demonstrate strong flexibility, with flexibility-adaptive coloration and curvature-enhanced aesthetics. This work presents an ST-OPV design featuring full visual aesthetics and considerable performance, paving the way for commercialization of organic solar windows for building and vehicle integration.

SCIENCE CHINA Materials2025DOI: 10.1007/s40843-025-3567-x

Low-cost Mn-based P2/O3 heterostructured layered oxide cathodes based on orbital-lattice synergistic modulation strategy for sodium-ion batteries

Manganese-based layered oxides are prospective cathodes for sodium-ion batteries (SIBs) due to high theoretical capacity and low cost, but the Jahn-Teller effect of Mn3+ (high-spin d4) induces irreversible phase transitions and lattice deformations. This study designs Ti-substituted P2/O3 heterostructured cathodes via an orbital-lattice synergistic modulation strategy. In situ XRD reveals that P2/O3 biphasic coupling suppresses the irreversible P2-to-O2 transition at high voltages. Synchrotron XAS shows that the d0 configuration of Ti4+ eliminates degenerate electronic states of Mn3+, mitigating Jahn-Teller distortion. The optimized P2/O3-Na0.85Mn0.95Ti0.05O2 (NMT-05) electrode delivers enhanced energy density and kinetics in half-cell and full-cell configurations paired with hard carbon anodes. This work provides guidelines for low-cost, highly stable Mn-based oxide cathodes.