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Active Polymer-Templated Porous Metal Oxide Nanospheres with Tailored Single-Atom Modification for Olfactory Intelligence
出版 2025“...These as-fabricated SA/mSnO<sub>2</sub> sensors exhibit tailored selectivity due to different single-atom modifications, high sensitivity (5.6 times higher than that of commercial sensors), and excellent device-to-device consistency. ...”
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Active Polymer-Templated Porous Metal Oxide Nanospheres with Tailored Single-Atom Modification for Olfactory Intelligence
出版 2025“...These as-fabricated SA/mSnO<sub>2</sub> sensors exhibit tailored selectivity due to different single-atom modifications, high sensitivity (5.6 times higher than that of commercial sensors), and excellent device-to-device consistency. ...”
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Surface-Engineered Filtration Device with Silver Nanoparticle–Silane Modifications for Enhanced Intracellular Delivery and Cell Transfection
出版 2025“...Our approach employs sequential surface modifications of filter paper with silver nanoparticles and silane coating to create controlled cell–material interactions. ...”
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Surface-Engineered Filtration Device with Silver Nanoparticle–Silane Modifications for Enhanced Intracellular Delivery and Cell Transfection
出版 2025“...Our approach employs sequential surface modifications of filter paper with silver nanoparticles and silane coating to create controlled cell–material interactions. ...”
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Active Polymer-Templated Porous Metal Oxide Nanospheres with Tailored Single-Atom Modification for Olfactory Intelligence
出版 2025“...These as-fabricated SA/mSnO<sub>2</sub> sensors exhibit tailored selectivity due to different single-atom modifications, high sensitivity (5.6 times higher than that of commercial sensors), and excellent device-to-device consistency. ...”
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Data Sheet 1_Epigenetic modification of hypothalamic neuropeptides and metabolic hormone receptors in metabolic health.pdf
出版 2025“...Adverse environmental factors, such as obesogenic diet, undernutrition, stress, and sedentary lifestyles, can disrupt the normal regulation of key hypothalamic neuropeptides and metabolic hormone receptors through epigenetic mechanisms, including DNA methylation, histone modifications, and microRNA regulation. These epigenetic alterations are not merely transient; they can be heritable and may influence metabolic health across generations, highlighting the critical need to understand the underlying epigenetic mechanisms. ...”
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Data Sheet 1_Exploration of biomarkers associated with histone lactylation modification in spinal cord injury.pdf
出版 2025主题: “...histone lactylation modification...”
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