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Keyword [Copper ions(?)]
Result: 161 - 180 | Page: 9 of 10
161. Synthesis And Fluorescence Sensing Properties Of Metal-organic Frameworlis Material Based On Benzimidazole Groups
162. Interaction Mechanism Between Copper Ions And Electrochemically Active Biofilms Under The Coexistence Of Heavy Metals And Organic Compounds
163. Study On Preparation Of PAN Functional Fiber Membrane And Adsorption Properties
164. Gold Nanomaterials Based Chemically Modified Electrodes For Detection Of Copper In Seawater Samples
165. Functional Nucleic Acid Fluorescence Probe And Signal Amplification Strategy:Study On L-Histidine And Hg2+and Cu2+
166. Sensor Based On Gold Nanoparticles For Etching Reaction And Carry Out Real Application In Food Detection
167. Fluorescence Properties Of Molybdenum Disulfide Quantum Dots And Sensing Of Copper Ions
168. Development Of Fluorescent Probes Based On Spirocyclic Rhodamines And Their Applications In Fluorescence Imaging
169. Preparation And Optical Properties Of Highly Active Au/Cu Composite Nanomaterials
170. Application Of Fluorescent Polymer Nanoparticles In The Detection Of Sulfite?Copper Ions And Glutathione
171. Adsorption Of Malachite Green And Copper Ions By Magnetic Nanorod Composites
172. Synthesis,Structure And Properties Of Hybrid Complexes Based On Rare Earth Elements And POMs
173. Study On Extraction And Separation Of Copper Ions In Water By Ionic Liquid Aliquat 336
174. Study On Electroplating Waste Water Containing Copper Ions By Electrolysis-coagulation
175. Preparation Of Magnetic Fluorescent Nanosensor And Application In The Detection And Removal Of Copper Ions
176. Prepartion Of Cellulose/PAN Fiber By Electrospinning And Research On Antibacterial Finishing
177. Study And Application Of New Analytical Methods Based On Metal Nanoparticles For Copper Ion
178. Design,synthesis And Detection For Fe2+ And Glyphosate Of Fluorescence Probes Based On Oxanthene Structure
179. Cu2+ And Fe3O4 Co-migration And Transformation Of Nanoparticles In The Vadose Zone
180. Synthesis And Applications Of BODIPY-Based Fluorescent Probes
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