Search results
Results: 195
Number of items: 195
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Li, C., Zuo, J., Li, Q., Chang, Y., Zhang, Y., Tu, L., Liu, X., Xue, B., Zhao, H., Zhang, H., & Kong, X. (2017). One-step in situ solid-substrate-based whole blood immunoassay based on FRET between upconversion and gold nanoparticles. Biosensors & Bioelectronics, 92, 335-341. https://doi.org/10.1016/j.bios.2016.11.003 -
Zuo, J., Li, Q., Xue, B., Li, C., Chang, Y., Zhang, Y., Liu, X., Tu, L., Zhang, H., & Kong, X. (2017). Employing shells to eliminate concentration quenching in photonic upconversion nanostructure. Nanoscale, 9(23), 7941-7946. https://doi.org/10.1039/c7nr01403a -
Li, C., Zuo, J., Zhang, L., Chang, Y., Zhang, Y., Tu, L., Liu, X., Xue, B., Li, Q., Zhao, H., Zhang, H., & Kong, X. (2016). Accurate Quantitative Sensing of Intracellular pH based on Self-ratiometric Upconversion Luminescent Nanoprobe. Scientific Reports, 6, Article 38617. https://doi.org/10.1038/srep38617 -
de Weerd, C., Gomez, L., Zhang, H., Buma, W. J., Nedelcu, G., Kovalenko, M. V., & Gregorkiewicz, T. (2016). Energy Transfer between Inorganic Perovskite Nanocrystals. The Journal of Physical Chemistry. C, 120(24), 13310-13315. https://doi.org/10.1021/acs.jpcc.6b04768 -
Chang, Y., Li, X., Kong, X., Li, Y., Liu, X., Zhang, Y., Tu, L., Xue, B., Wu, F., Cao, D., Zhao, H., & Zhang, H. (2015). A highly effective in vivo photothermal nanoplatform with dual imaging-guided therapy of cancer based on the charge reversal complex of dye and iron oxide. Journal of Materials Chemistry. B, 3(42), 8321-8327. https://doi.org/10.1039/c5tb01455g -
Liu, X., Que, I., Kong, X., Zhang, Y., Tu, L., Chang, Y., Wang, T. T., Chan, A., Löwik, C. W. G. M., & Zhang, H. (2015). In vivo 808 nm image-guided photodynamic therapy based on an upconversion theranostic nanoplatform. Nanoscale, 7(36), 14914-14923. https://doi.org/10.1039/c5nr03690a -
Shao, D., Li, J., Pan, Y., Zhang, X., Zheng, X., Wang, Z., Zhang, M., Zhang, H., & Chen, L. (2015). Noninvasive theranostic imaging of HSV-TK/GCV suicide gene therapy in liver cancer by folate-targeted quantum dot-based liposomes. Biomaterials Science, 3(6), 833-841. https://doi.org/10.1039/c5bm00077g -
Sun, M., Qu, S., Ji, W., Jing, P., Li, D., Qin, L., Cao, J., Zhang, H., Zhao, J., & Shen, D. (2015). Towards efficient photoinduced charge separation in carbon nanodots and TiO2 composites in the visible region. Physical Chemistry Chemical Physics, 17(12), 7966-7971. https://doi.org/10.1039/c5cp00444f -
Lou, Q., Qu, S., Jing, P., Ji, W., Li, D., Cao, J., Zhang, H., Liu, L., Zhao, J., & Shen, D. (2015). Water-Triggered Luminescent "Nano-bombs" Based on Supra-(Carbon Nanodots). Advanced materials, 27(8), 1389-1394. https://doi.org/10.1002/adma.201403635 -
Wang, D., Xue, B., Kong, X., Tu, L., Liu, X., Zhang, Y., Chang, Y., Luo, Y., Zhao, H., & Zhang, H. (2015). 808 nm driven Nd3+-sensitized upconversion nanostructures for photodynamic therapy and simultaneous fluorescence imaging. Nanoscale, 7(1), 190-197. https://doi.org/10.1039/c4nr04953e
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