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  1. Yangbin Lu, Kang Qu, Tao Zhang, Qingquan He, Jun Pan. Affiliations. DOI. https://doi.org/10.3390/nano13030419. Journal volume & issue. Vol. 13, no. 3. p. 419. Abstract. Read online. Metal halide perovskites are promising energy materials because of their high absorption coefficients, long carrier lifetimes, strong photoluminescence, and low cost.

  2. Abstract. All-inorganic perovskite nanocrystals (PNCs) have been anticipated to be used in efficient and stable perovskite optoelectronic devices because of their suitable bandgap, broad absorption spectrum, and high color purity.

  3. Kang Qu, Yangbin Lu, Peng Ran, Kun Wang, Nan Zhang, Kaiyu Xia, Hongyan Zhang, Xiaodong Pi, Hanlin Hu, Yang (Michael) Yang, Qingquan He, Jun Yin, Jun Pan. Zn (II)‐Doped Cesium Copper Halide Nanocrystals with High Quantum Yield and Colloidal Stability for High‐Resolution X‑Ray Imaging.

  4. Kang Qu, Yangbin Lu, Peng Ran, Kun Wang, Nan Zhang, Kaiyu Xia, Hongyan Zhang, Xiaodong Pi, Hanlin Hu, Yang (Michael) Yang, Qingquan He, Jun Yin, Jun Pan. Zn (II)‐Doped Cesium Copper Halide Nanocrystals with High Quantum Yield and Colloidal Stability for High‐Resolution X‑Ray Imaging.

  5. Yangbin Lu. College of Materials Science and Engineering, Zhejiang University of Technology, Hangzhou, 310014 China. Search for more papers by this author

  6. Metal halide perovskites are promising energy materials because of their high absorption coefficients, long carrier lifetimes, strong photoluminescence, and low cost. Low-dimensional halide perovskites, especially one-dimensional (1D) halide perovskite nanowires (NWs), have become a hot research top ….

  7. Qu, Kang ; Lu, Yangbin ; Ran, Peng et al. / Zn (II)-Doped Cesium Copper Halide Nanocrystals with High Quantum Yield and Colloidal Stability for High-Resolution X‑Ray Imaging. In: Advanced Optical Materials. 2023 ; Vol. 11, No. 7.