Smart cellulose-based room temperature phosphorescent materials: From mechanisms to construction strategies and applications. [PDF]
This review elucidates the photophysical mechanisms of cellulose‐based room temperature phosphorescent materials and systematically outlines their construction strategies, such as cluster emission center engineering. This article demonstrates their applications in fields like information encryption and bioimaging, and looks ahead to the core challenges
Wu S +10 more
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Reduced Retinal Perfusion With Preserved Microvascular Network Density in Early Alzheimer's Disease: A Multimodal Imaging Study. [PDF]
Gameiro GR +4 more
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Hydrogen bonding triggered tunable high temperature phosphorescence. [PDF]
Qiu SQ +7 more
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Improving recombinant protein productivity in CHO cells via multi-omics data integration. [PDF]
Shen Y +5 more
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Shoulder Internal and External Rotator Strength Reliability and Validity in Healthy Adolescent Athletes. [PDF]
Sloma K +9 more
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APKASS 2024 consensus statement on anterior cruciate ligament reconstruction, part Ⅲ: Return to play after anterior cruciate ligament reconstruction. [PDF]
Liang Z +23 more
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Machine Learning-Guided Tailored Synthesis of Single Room-Temperature Phosphorescent Carbon Dots. [PDF]
Lin YQ +10 more
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Coordinatively improving polymeric phosphorescence lifetime and quantum yield via triplet exciton modulation. [PDF]
Hou H +9 more
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Polylactic Acid-Based Biodegradable Room-Temperature Phosphorescent Materials: A Review. [PDF]
Zhang N +7 more
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Biomass-based thermally tunable dual afterglow with room temperature daylight visibility. [PDF]
Sun H +9 more
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