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All Outputs (8)

Development of a real-world direct interface for integrated DNA extraction and amplification in a microfluidic device (2010)
Journal Article
Shaw, K. J., Joyce, D., Docker, P. T., Dyer, C. E., Greenway, G. M., Greenman, J., & Haswell, S. J. (2011). Development of a real-world direct interface for integrated DNA extraction and amplification in a microfluidic device. Lab on a chip, 11(3), 443-448. https://doi.org/10.1039/c0lc00346h

Integrated DNA extraction and amplification have been carried out in a microfluidic device using electro-osmotic pumping (EOP) for fluidic control. All the necessary reagents for performing both DNA extraction and polymerase chain reaction (PCR) ampl... Read More about Development of a real-world direct interface for integrated DNA extraction and amplification in a microfluidic device.

Design and synthesis of polymetallic nanoparticles and their catalytic applications (2010)
Journal Article
Ibhadon, A. O., Yue, Y., & Greenway, G. M. (2011). Design and synthesis of polymetallic nanoparticles and their catalytic applications. Materials letters, 65(4), 602-605. https://doi.org/10.1016/j.matlet.2010.11.011

High-temperature hydrogen reduction reactions enable the synthesis and processing of binary metal oxide composite nanoparticles starting from titanium, ruthenium, and silicon, while the use of a surface modifier and an organic surfactant enables the... Read More about Design and synthesis of polymetallic nanoparticles and their catalytic applications.

Microfluidic synthesis of silica nanoparticles using polyethylenimine polymers (2010)
Journal Article
He, P., Greenway, G., & Haswell, S. J. (2011). Microfluidic synthesis of silica nanoparticles using polyethylenimine polymers. Chemical Engineering Journal, 167(2-3), 694-699. https://doi.org/10.1016/j.cej.2010.08.079

A microfluidic reactor system for the synthesis of silica nanoparticles has been developed from commercially available ETFE tubing (0.17-1.0 mm diameter) connected in series to support the hydrolysis, nucleation and particle growth based on a sol-gel... Read More about Microfluidic synthesis of silica nanoparticles using polyethylenimine polymers.

Microscreening toxicity system based on living magnetic yeast and gradient chips (2010)
Journal Article
García-Alonso, J., Fakhrullin, R. F., Paunov, V. N., Shen, Z., Hardege, J. D., Pamme, N., …Greenway, G. M. (2011). Microscreening toxicity system based on living magnetic yeast and gradient chips. Analytical and Bioanalytical Chemistry, 400(4), 1009-1013. https://doi.org/10.1007/s00216-010-4241-3

There is an increasing demand for easy and cost-effective methods to screen the toxicological impact of the growing number of chemical mixtures being generated by industry. Such a screening method has been developed using viable, genetically modified... Read More about Microscreening toxicity system based on living magnetic yeast and gradient chips.

Development of an electro-kinetically driven integrated DNA profile separation and detection system (2010)
Thesis
Oakley, J. A. (2010). Development of an electro-kinetically driven integrated DNA profile separation and detection system. (Thesis). University of Hull. Retrieved from https://hull-repository.worktribe.com/output/4212978

Described in current literature is the methodology of different aspects of creating a DNA profile which has been successfully performed within a micro-fluidic environment; however integration of each of the different procedures onto a single device h... Read More about Development of an electro-kinetically driven integrated DNA profile separation and detection system.

A microflow chemiluminescence system for determination of chloramphenicol in honey with preconcentration using a molecularly imprinted polymer (2010)
Journal Article
Thongchai, W., Liawruangath, B., Liawruangrath, S., & Greenway, G. M. (2010). A microflow chemiluminescence system for determination of chloramphenicol in honey with preconcentration using a molecularly imprinted polymer. Talanta, 82(2), 560-566. https://doi.org/10.1016/j.talanta.2010.05.007

A novel chemiluminescence (CL) microfluidic system incorporating a molecularly imprinted polymer (MIP) preconcentration step was used for the determination of chloramphenicol in honey samples. The MIP was prepared by using chloramphenicol as the temp... Read More about A microflow chemiluminescence system for determination of chloramphenicol in honey with preconcentration using a molecularly imprinted polymer.

Rapid PCR amplification using a microfluidic device with integrated microwave heating and air impingement cooling (2010)
Journal Article
Shaw, K. J., Docker, P. T., Yelland, J. V., Dyer, C. E., Greenman, J., Greenway, G. M., & Haswell, S. J. (2010). Rapid PCR amplification using a microfluidic device with integrated microwave heating and air impingement cooling. Lab on a chip, 10(13), 1725-1728. https://doi.org/10.1039/c000357n

A microwave heating system is described for performing polymerase chain reaction (PCR) in a microfluidic device. The heating system, in combination with air impingement cooling, provided rapid thermal cycling with heating and cooling rates of up to 6... Read More about Rapid PCR amplification using a microfluidic device with integrated microwave heating and air impingement cooling.

The development and evaluation of a conducting matrix for the electrochemical regeneration of the immobilised co-factor NAD(H) under continuous flow (2010)
Journal Article
Ngamsom, B., Hickey, A. M., Greenway, G. M., Littlechild, J. A., McCreedy, T., Watts, P., & Wiles, C. (2010). The development and evaluation of a conducting matrix for the electrochemical regeneration of the immobilised co-factor NAD(H) under continuous flow. Organic & biomolecular chemistry, 8(10), 2419-2424. https://doi.org/10.1039/b924100k

Through the preparation of a novel controlled pore glass-poly(pyrrole) material we have developed a conducting support that is not only suitable for the co-immobilisation of enzymes and co-factors, but also enables the facile electrochemical regenera... Read More about The development and evaluation of a conducting matrix for the electrochemical regeneration of the immobilised co-factor NAD(H) under continuous flow.