Wei Liu, Ph.D.
Affiliations: | Johns Hopkins University, Baltimore, MD |
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Publications
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Qi F, Wang C, Cheng N, et al. (2018) Improving the performance through SPR effect by employing Au@SiO2 core-shell nanoparticles incorporated TiO2 scaffold in efficient hole transport material free perovskite solar cells Electrochimica Acta. 282: 10-15 |
Mehnane HF, Wang C, Kondamareddy KK, et al. (2017) Hydrothermal synthesis of TiO2 nanoparticles doped with trace amounts of strontium, and their application as working electrodes for dye sensitized solar cells: tunable electrical properties & enhanced photo-conversion performance Rsc Advances. 7: 2358-2364 |
Shen Z, Du G, Zhou Z, et al. (2015) Aberrant expression of interleukin-22 and its targeting microRNAs in oral lichen planus: a preliminary study. Journal of Oral Pathology & Medicine : Official Publication of the International Association of Oral Pathologists and the American Academy of Oral Pathology |
Yu X, Wang B, Zhang N, et al. (2015) Capture and Release of Cancer Cells by Combining On-Chip Purification and Off-Chip Enzymatic Treatment. Acs Applied Materials & Interfaces |
Yu W, Sun W, Liu Y, et al. (2015) Constructed Single-Crystal Rutile TiO |
Liu W, Pan L, Armitage NP. (2014) A broadband microwave Corbino spectrometer at ³He temperatures and high magnetic fields. The Review of Scientific Instruments. 85: 093108 |
Yu Z, You S, Wang C, et al. (2014) Efficient dye-sensitized solar cells employing highly environmentally-friendly ubiquinone 10 based I2-free electrolyte inspired by photosynthesis Journal of Materials Chemistry. 2: 9007-9010 |
Liu W, Pan L, Wen J, et al. (2013) Microwave spectroscopy evidence of superconducting pairing in the magnetic-field-induced metallic state of InO(x) films at zero temperature. Physical Review Letters. 111: 067003 |
He R, Zhao L, Liu Y, et al. (2013) Biocompatible TiO2 nanoparticle-based cell immunoassay for circulating tumor cells capture and identification from cancer patients. Biomedical Microdevices. 15: 617-26 |
Yu X, He R, Li S, et al. (2013) Magneto-controllable capture and release of cancer cells by using a micropillar device decorated with graphite oxide-coated magnetic nanoparticles. Small (Weinheim An Der Bergstrasse, Germany). 9: 3895-901 |