-
141
-
142
-
143
-
144
-
145
Surface-Engineered Filtration Device with Silver Nanoparticle–Silane Modifications for Enhanced Intracellular Delivery and Cell Transfection
Publicat 2025“…Our approach employs sequential surface modifications of filter paper with silver nanoparticles and silane coating to create controlled cell–material interactions. …”
-
146
Active Polymer-Templated Porous Metal Oxide Nanospheres with Tailored Single-Atom Modification for Olfactory Intelligence
Publicat 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. …”
-
147
Active Polymer-Templated Porous Metal Oxide Nanospheres with Tailored Single-Atom Modification for Olfactory Intelligence
Publicat 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. …”
-
148
-
149
-
150
-
151
-
152
-
153
Surface-Engineered Filtration Device with Silver Nanoparticle–Silane Modifications for Enhanced Intracellular Delivery and Cell Transfection
Publicat 2025“…Our approach employs sequential surface modifications of filter paper with silver nanoparticles and silane coating to create controlled cell–material interactions. …”
-
154
Surface-Engineered Filtration Device with Silver Nanoparticle–Silane Modifications for Enhanced Intracellular Delivery and Cell Transfection
Publicat 2025“…Our approach employs sequential surface modifications of filter paper with silver nanoparticles and silane coating to create controlled cell–material interactions. …”
-
155
-
156
-
157
Active Polymer-Templated Porous Metal Oxide Nanospheres with Tailored Single-Atom Modification for Olfactory Intelligence
Publicat 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. …”
-
158
Role of N mRNA m6A modifications in RNA stability and efficient viral replication.
Publicat 2025Matèries: -
159
-
160