188 results on '"Mello, Andrew J."'
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2. Droplet‐Based Microfluidics Reveals Insights into Cross‐Coupling Mechanisms over Single‐Atom Heterogeneous Catalysts
3. A re-evaluation of the role of coumarin C460 as a fluorescent Pd(II) sensor
4. Real-time, smartphone-based processing of lateral flow assays for early failure detection and rapid testing workflows
5. Chip technology for micro-separation
6. On Chip Generation and Reaction of Unstable Intermediates: Monolithic Microreactors for Diazonium Chemistries
7. Controlled Quantum Dot Synthesis within Microfluidic Circuits
8. Thin-film organic photodiodes for integrated on-chip chemiluminescence detection – application to antioxidant capacity screening
9. Exploiting Reaction‐Diffusion Conditions to Trigger Pathway Complexity in the Growth of a MOF
10. Inside Cover: Exploiting Reaction‐Diffusion Conditions to Trigger Pathway Complexity in the Growth of a MOF (Angew. Chem. Int. Ed. 29/2021)
11. Innentitelbild: Exploiting Reaction‐Diffusion Conditions to Trigger Pathway Complexity in the Growth of a MOF (Angew. Chem. 29/2021)
12. Development of quantitative cell-based enzyme assays in microdroplets
13. A Simple technique for microfluidic heterogeneous catalytic hydrogenation reactor fabrication
14. Biomimetic Synthesis of Sub-20 nm Covalent Organic Frameworks in Water
15. Single Particle Confocal Fluorescence Spectroscopy in Microchannels: Dependence of Burst Width and Burst Area Distributions on Particle Size and Flow Rate
16. Titelbild: Droplet‐Based Microfluidics Reveals Insights into Cross‐Coupling Mechanisms over Single‐Atom Heterogeneous Catalysts (Angew. Chem. 20/2024).
17. A Single Point Evanescent Wave Probe for On-Chip Refractive Index Detection
18. Biomimetic Synthesis of Sub-20 nm Covalent Organic Frameworks in Water
19. Variable-angle time-resolved evanescent wave-induced fluorescence spectroscopy (VATR-EWIFS): a technique for concentration profiling fluorophores at dielectric interfaces
20. Mineralization-Inspired Synthesis of Magnetic Zeolitic Imidazole Framework Composites
21. Chip technology for micro-separation
22. Mineralization‐Inspired Synthesis of Magnetic Zeolitic Imidazole Framework Composites
23. MOF‐Based Microrobots: MOFBOTS: Metal–Organic‐Framework‐Based Biomedical Microrobots (Adv. Mater. 27/2019)
24. MOFBOTS: Metal–Organic‐Framework‐Based Biomedical Microrobots
25. Chemical Amplification: Continuous-Flow PCR on a Chip
26. Electrophoretic analysis of amines using reversed-phase, reversed-polarity, head-column field-amplified sample stacking and laser-induced fluorescence detection
27. Alkene epoxidation with a polystyrene immobilised metal salen catalyst in a continuous-flow microfluidic reactor.
28. Miniaturization
29. Hydrodynamic focusing in microstructures: Improved detection efficiencies in subfemtoliter probe volumes.
30. Nanoparticle separation with a miniaturized asymmetrical flow field-flow fractionation cartridge
31. Holographic refractive index detector for application in microchip-based separation systems
32. Analysis of DNA Binding and Nucleotide Flipping Kinetics Using Two-Color Two-Photon Fluorescence Lifetime Imaging Microscopy
33. Droplet-Interfaced Microchip and Capillary Electrophoretic Separations
34. Fluorescence-lifetime imaging of DNA-dye interactions within continuous-flow microfluidic systems
35. Gas-Liquid Segmented Flow Microfluidics for Screening Pd-Catalyzed Carbonylation Reactions
36. Investigating fast enzyme-DNA kinetics using multidimensional fluorescence imaging and microfluidics
37. Rapid prototyping of microfluidic devices for integrating with FT-IR spectroscopic imaging
38. Miniaturization
39. Chemical imaging of microfluidic flows using ATR-FTIR spectroscopy
40. A microfluidic platform for probing single cell plasma membranes using optically trapped Smart Droplet Microtools (SDMs)
41. Three-dimensional molecular mapping in a microfluidic mixing device using fluorescence lifetime imaging
42. Fluorescence-Lifetime Imaging of DNA–Dye Interactions within Continuous-Flow Microfluidic Systems
43. Rapid Multiphase Carbonylation Reactions by Using a Microtube Reactor: Applications in Positron Emission Tomography11C-Radiolabeling
44. Rapid formation of amidesvia carbonylative coupling reactions using a microfluidic device
45. Organic light emitting diodes and photodetectors: Toward applications in lab-on-a-chip portable devices
46. Microfluidic Systems for High‐Throughput and Combinatorial Chemistry
47. Thermal optimisation of the Reimer–Tiemann reaction using thermochromic liquid crystals on a microfluidic reactor
48. Precise temperature control in microfluidic devices using Joule heating of ionic liquids
49. Continuous-Flow Generation of Anhydrous Diazonium Species: Monolithic Microfluidic Reactors for the Chemistry of Unstable Intermediates
50. Focus. Dealing with ‘real’ samples: sample pre-treatment in microfluidic systems
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