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WANG Yue, WANG Jinling, MA Jianxin, ZHANG Yue, XU Na, WANG Xiuli. Multi-functional Photoelectric Sensor Based on a Three-fold Interpenetrated Cd(II) Coordination Polymer for Sensitively Detecting Different Ions[J]. 高等学校化学研究, 2022, 38(4): 1105-1110. |
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CHEN Zhangwu and LI Fen. Proton-induced Conversion from Non-Aufbau to Aufbau Electronic Structure of an Organic Radical with Turn-on Fluorescence[J]. 高等学校化学研究, 2022, 38(3): 798-802. |
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XU Kai, HUANG Ning. Recent Advances of Covalent Organic Frameworks in Chemical Sensing[J]. 高等学校化学研究, 2022, 38(2): 339-349. |
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NIU Junfeng, SUN Haiya, XIA Housheng, ZHU Yinbang, CHEN Jialing, ZHU Chengye, BAI Wei. Visualization of Bulk Polymerization by Fluorescent Probe with Aggregation-induced Emission Characteristics[J]. 高等学校化学研究, 2022, 38(2): 500-504. |
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LI Mingfeng, FANG Hongbao, JI Yifan, CHEN Yuncong, HE Weijiang, GUO Zijian. Rational Design of Ratiometric Fe3+ Fluorescent Probes Based on FRET Mechanism[J]. 高等学校化学研究, 2022, 38(1): 67-74. |
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CHU Binbin, WANG Houyu, HE Yao. Fluorescent Silicon-based Nanomaterials Imaging Technology in Diseases[J]. 高等学校化学研究, 2021, 37(4): 880-888. |
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LU Feng, ZHAO Ting, SUN Xiaojun, WANG Zuqiang, FAN Quli, HUANG Wei. Rare-earth Doped Nanoparticles with Narrow NIR-II Emission for Optical Imaging with Reduced Autofluorescence[J]. 高等学校化学研究, 2021, 37(4): 943-950. |
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YUAN Fang, LI Yang, CHEN Zhenjuan, ZHANG Jianjian, NING Lulu, YANG Xiao-Feng, PU Kanyi. Excimer-based Activatable Fluorescent Sensor for Sensitive Detection of Alkaline Phosphatase[J]. 高等学校化学研究, 2021, 37(4): 960-966. |
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CHEN Mingyu, XIANG Song, LV Panpan, QI Chunxuan, FENG Hai-Tao, TANG Ben Zhong. A Novel Fluorescence Tool for Monitoring Agricultural Industry Chain Based on AIEgens[J]. 高等学校化学研究, 2021, 37(1): 38-51. |
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LIU Wen, ZHANG Yuhuang, QI Ji, QIAN Jun, TANG Ben Zhong. NIR-II Excitation and NIR-I Emission Based Two-photon Fluorescence Lifetime Microscopic Imaging Using Aggregation-induced Emission Dots[J]. 高等学校化学研究, 2021, 37(1): 171-176. |
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WANG Yijie, WANG Lei, WANG Haiyu. Investigation on the Relationship Between Carbon Cores and Fluorescence Moieties by Measurement of Fluorescence Anisotropy of CDs with Different Sizes[J]. 高等学校化学研究, 2020, 36(5): 894-900. |
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LIU Yuanyuan, LI Yi, ZONG Linghui, ZHANG Jingyi. Comparison of Two Rhodamine-Polyamine Polystyrene Solid-phase Fluorescence Sensors for Hg(II) Detection Based on Theoretical Calculation[J]. 高等学校化学研究, 2020, 36(5): 781-786. |
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FU Pengyan, MO Junting, SUN Sisi, YIN Shaoyun, WANG Haiping, PAN Mei. Acid-base Vapor Sensing Enabled by ESIPT-attributed Cd(II) Coordination Polymer with Switchable Luminescence[J]. 高等学校化学研究, 2020, 36(5): 755-759. |
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LI Tao, DUAN Ruilin, DUAN Zhijuan, HUANG Fujian, XIA Fan. Fluorescence Signal Amplification Strategies Based on DNA Nanotechnology for miRNA Detection[J]. 高等学校化学研究, 2020, 36(2): 194-202. |
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ZHANG Bin, JIANG Jiquan, YUAN Ying, GUAN Yifu. Influence of Nucleotide-biased Fluorescence Emissions of SYBR Green II on the Result Consistence of Rolling Circle Amplification[J]. 高等学校化学研究, 2019, 35(6): 1119-1123. |