Selected Publications

See Google Scholar for an up to date list of publications: A. Elias

Refereed Journal Publications

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46. Cho, C. Elias, A.L, <\b> Batcheller, J, Dolez P, and Chung H.-J. (2019). , Electrical conduction of reduced graphene oxide coated meta-aramid textile and its evolution under aging conditions. Journal of Industrial Textiles, In Press.
45. Lopera-Valle, A. and Elias, A.L.(2019). , Amine Responsive Poly(lactic acid) (PLA) and Succinic Anhydride (SAh) Graft-Polymer: Synthesis and Characterization. Polymers 11(9), 1466.
44. Dan, L., Shi, S., Chung, H.-J. and Elias, A.L.(2019). Porous Polydimethylsiloxane-Silver Nanowire Devices for Wearable Pressure Sensors. ACS Applied Nanomaterials 2(8), 4869-4878.
43. Qiu, S. La, T.G., Zheng, L., Cho, C. Elias, A.L. Rieger, J. and Chung, H.J. (2019). Mechanically and electrically robust stretchable E-textiles by controlling the permeation depth of silver-based conductive Inks. Flexible and Printed Electronics, 4(2), 025006.
42. Lopera-Valle, A., Caputo, J.V., Sauvageau, D. S., Luz, S.M. & Elias, A.L. (2019). Influence of Epoxidized Canola Oil (eCO) and Cellulose Nanocrystals (CNCs) on the Mechanical and Thermal Properties of Polyhydroxybutyrate (PHB)—Poly(lactic acid) (PLA) Blends. Polymers, 11(6), 933.
41. Lopera-Valle, A., & Elias, A. (2018). Low-resistance silver microparticle-HEMA-PEGDA composites for humidity sensing. Smart Materials and Structures, 27, 105030.
40. Dan, L., Pope, M. A., & Elias, A. L. (2018). Solution-processed conductive biocomposites based on polyhydroxybutyrate and reduced graphene oxide. The Journal of Physical Chemistry C, 122(30), 17490–17500.
39. Martínez-Tobón, D. I., Gul, M., Elias, A. L., & Sauvageau, D. (2018). Polyhydroxybutyrate (PHB) biodegradation using bacterial strains with demonstrated and predicted PHB depolymerase activity. Applied Microbiology and Biotechnology, 102(18), 8049–8067.
38. Koss, K. M., Churchward, M. A., Jeffery, A. F., Mushahwar, V. K., Elias, A. L., & Todd, K. G. (2017). Improved 3D hydrogel cultures of primary glial cells for in vitro modelling of neuroinflammation. Journal of Visualized Experiments, 130, e56615.
37. Fan, S., Dan, L., Meng, L., Zheng, W., Elias, A., & Wang, X. (2017). Improved response time of flexible microelectromechanical sensors employing eco-friendly nanomaterials. Nanoscale, 9, 16915–16921.
36. Liu, L., Li, X., Nagao, M., Elias, A. L., Narain, R., & Chung, H.-J. (2017). A pH-indicating colorimetric tough hydrogel patch towards applications in a substrate for smart wound dressings. Polymers, 9(11), 558.
35. Anbukarasu, P., Sauvageau, D., & Elias, A. L. (2017). Enzymatic degradation of dimensionally constrained polyhydroxybutyrate films. Physical Chemistry Chemical Physics, 19, 30021–30030.
34. Sridar, S., Churchward, M. A., Mushahwar, V. K., Todd, K. G., & Elias, A. L. (2017). Peptide modification of polyimide-insulated microwires: Towards improved biocompatibility through reduced glial scarring. Acta Biomaterialia, 60, 154–166.
33. Anbukarasu, P., Martínez-Tobón, D. I., Sauvageau, D., & Elias, A. L. (2017). A diffraction-based degradation sensor for polymer thin films. Polymer Degradation and Stability, 142, 102–110.
32. Anbukarasu, P., Sauvageau, D., & Elias, A. L. (2017). Time-temperature indicator based on enzymatic degradation of dye‐loaded polyhydroxybutyrate. Biotechnology Journal, 12, 1700050. Featured on the inside cover
31. Elias, A. L., Elliott, D. G., & Elliott, J. A. W. (2017). Student perceptions and instructor experiences in implementing an online homework system in a large second-year engineering course. Education for Chemical Engineers, 21, 40–49.
30. Hoang, M. V., Chung, H.-J., & Elias, A. L. (2016). Irreversible bonding of polyimide and polydimethylsiloxane (PDMS) based on a thiol-epoxy click reaction. Journal of Micromechanics and Microengineering, 26, 105019.
29. Harris, K. D., Elias, A. L., & Chung, H.-J. (2016). Flexible electronics under strain: A review of mechanical characterization and durability enhancement strategies. Journal of Materials Science, 51(6), 2771–2805.
28. Wang, C., Sauvageau, D., & Elias, A. (2016). Immobilization of active bacteriophages on polyhydroxyalkanoate surfaces. ACS Applied Materials & Interfaces, 8(2), 1128–1138.
27. Anbukarasu, P., Sauvageau, D., & Elias, A. (2015). Tuning the properties of polyhydroxybutyrate films using acetic acid via solvent casting. Scientific Reports, 5, 17884.
26. Zhang, L., Elias, A., Chen, W., & Gao, K. (2015). Electrical conductivity and wear behavior of bi-continuous Cr3C2–Cu composites. Ceramics International, 41(9), 11075–11079.
25. Zhang, L., Pang, X., Gao, K., Elias, A., & Chen, W. (2015). Mechanical properties of a bi-continuous Cu–Cr3C2 composite. Materials Science and Engineering: A, 623, 4–9.
24. Nearingburg, B., & Elias, A. L. (2014). Patterning multilayer microfluidic electrochemical devices by maskless laminar flow lithography. RSC Advances, 4(57), 29975–29987.
23. Ho, C. H., Triolo, R. J., Elias, A. L., Kilgore, K. L., DiMarco, A. F., Bogie, K., … Mushahwar, V. K. (2014). Functional electrical stimulation and spinal cord injury. Physical Medicine and Rehabilitation Clinics of North America, 25(3), 631–654.
22. Jeffery, A. F., Churchward, M. A., Mushahwar, V. K., Todd, K. G., & Elias, A. L. (2014). Hyaluronic acid-based 3D culture model for in vitro testing of electrode biocompatibility. Biomacromolecules, 15(6), 2157–2165.
21. Huang, X., & Elias, A. L. (2014). Surface modified polymer thin films with enhanced sensitivity to a naphthenic acid model compound: A study by quartz crystal microbalance. Sensors and Actuators B, 198, 7–14.
20. Hauger, T. C., Zeberoff, A., Worfolk, B. J., Elias, A. L., & Harris, K. D. (2014). Real-time resistance, transmission and figure-of-merit analysis for transparent conductors under stretching-mode strain. Solar Energy Materials and Solar Cells, 124, 247–255.
19. Zhang, L., Gao, K., Elias, A., Dong, Z., & Chen, W. (2014). Porosity dependence of elastic modulus of porous Cr3C2 ceramics. Ceramics International, 40, 191–198.
18. Jafari, M. R., Deng, L., Kitov, P. I., Ng, S., Matochko, W. L., … Elias, A., … Derda, R. (2014). Discovery of light-responsive ligands through screening of a light-responsive genetically encoded library. ACS Chemical Biology, 9(2), 443–450.
17. Zeberoff, A., Derda, R., & Elias, A. L. (2013). Remote activation of a microactuator using a frequency specific photo-responsive gold nanoparticle composite. Journal of Micromechanics and Microengineering, 23, 125022.
16. Khaled, I., Elmallah, S., Cheng, C., Moussa, W. A., Mushahwar, V. K., & Elias, A. L. (2013). A flexible base electrode array for intraspinal microstimulation. IEEE Transactions on Biomedical Engineering, 60, 2904–2913.
15. Cheng, C., Kmech, J., Mushahwar, V. K., & Elias, A. L. (2013). Development of surrogate spinal cords for the evaluation of electrode arrays used in intraspinal implants. IEEE Transactions on Biomedical Engineering, 60, 1667–1676.
14. Tait, J. G., Worfolk, B. J., Maloney, S. A., Hauger, T. C., Elias, A. L., Buriak, J. M., & Harris, K. D. (2013). Spray coated high-conductivity PEDOT:PSS transparent electrodes for stretchable and mechanically-robust organic solar cells. Solar Energy Materials and Solar Cells, 110, 98–106.
13. Reynolds, M., Elias, A., Elliott, D. G., Backhouse, C., & Sameoto, D. (2012). Variation of thermal and mechanical properties of KMPR due to processing parameters. Journal of Micromechanics and Microengineering, 22, 125023.
12. Nearingburg, B., & Elias, A. L. (2012). Photopolymerizable sulfonated poly(ethylene glycol) proton exchange membranes for microfluidic and fuel cell applications. Journal of Membrane Science, 389, 148–154.
11. Zahorodny-Burke, M., Nearingburg, B., & Elias, A. L. (2011). Finite element analysis of oxygen transport in microfluidic cell culture devices with varying channel architectures, perfusion rates, and materials. Chemical Engineering Science, 66, 6244–6253.
10. Ullah, A., Vasanthan, T., Bressler, D., Elias, A. L., & Wu, J. (2011). Bioplastics from feather quill. Biomacromolecules, 12, 3826–3832.
9. Worfolk, B. J., Rider, D. A., Elias, A. L., Thomas, M., Harris, K. D., & Buriak, J. M. (2011). Bulk heterojunction organic photovoltaics based on carboxylated polythiophenes and PCBM on glass and plastic substrates. Advanced Functional Materials, 21, 1816–1826.
8. Nearingburg, B., & Elias, A. L. (2011). Characterization of surface plasmon energy transduction in gold nanoparticle/polymer composites by photo-DSC. Thermochimica Acta, 512, 247–253.
7. Elias, A. L., Brett, M. J., Harris, K. D., Bastiaansen, C. W. M., & Broer, D. J. (2007). Three techniques for micropatterning liquid crystalline polymers. Molecular Crystals and Liquid Crystals, 477, 631–645.
6. Wakefield, N. G., Elias, A. L., Brett, M. J., Sit, J. C., & Broer, D. J. (2007). Alignment of liquid crystals infiltrated into porous thin films with tailored nanostructures grown by glancing angle deposition. Molecular Crystals and Liquid Crystals, 475, 85–96.
5. Elias, A. L., Harris, K. D., Bastiaansen, C. W. M., Broer, D. J., & Brett, M. J. (2006). Photopatterned liquid crystalline polymers for microactuators. Journal of Materials Chemistry, 16, 2903–2912. Included in the Hot Articles section of J. Mater. Chem. and featured in the trade publication Chemical Technology (Issue 9, 2006)
4. Elias, A. L., Brett, M. J., Sousa, M. E., Woltman, S. J., Crawford, G. P., Bastiaansen, C. W. M., & Broer, D. J. (2006). Template induced chiral ordering in nematic liquid crystalline materials: A deuterium nuclear magnetic resonance study. Journal of Applied Physics, 99, 116105.
3. Fernando, S. P., Elias, A. L., & Brett, M. J. (2006). Mechanical properties of helically perforated thin films. Journal of Materials Research, 21, 1101–1105.
2. Elias, A. L., Harris, K. D., Bastiaansen, C. W. M., Broer, D. J., & Brett, M. J. (2005). Large-area microfabrication of three-dimensional, helical polymer structures. Journal of Micromechanics and Microengineering, 15, 49–54.
1. Elias, A. L., Harris, K. D., & Brett, M. J. (2004). Fabrication of helically perforated gold, nickel, and polystyrene thin films. Journal of Microelectromechanical Systems, 13, 808–813.

Invited Book Chapter

1. Elias, A. L., Nearingburg, B., & Zahorodny-Burke, M. (2011). Microfluidic cell culture devices. In S. K. Mitra & S. Chakraborty (Eds.), Microfluidics and nanofluidics handbook: Chemistry, physics, and life science principles (pp. 951–1015). Boca Raton, FL: CRC Press.