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    1.One-pot synthesis of highly luminescent InP/ZnS nanocrystals without precursor injection

    Li, L, Reiss, P

    JOURNAL OF THE AMERICAN CHEMICAL SOCIETY[0002-7863], Published 2008, Volume 130, Issue 35, Pages 11588-11589

    收錄情况: WOS SCOPUS

    WOS核心合集引用: 390  2023影響因子:  14.5  发表年影響因子:  8.091 

    2.Economic synthesis of high quality InP nanocrystals using calcium phosphide as the phosphorus precursor

    Li, L, Protiere, M,     More...

    CHEMISTRY OF MATERIALS[0897-4756], Published 2008, Volume 20, Issue 8, Pages 2621-2623

    收錄情况: WOS SCOPUS

    WOS核心合集引用: 122  2023影響因子:  7.2  发表年影響因子:  5.046 

    3.Stable Lead-Free Tin Halide Perovskite with Operational Stability >1200 h by Suppressing Tin(II) Oxidation

    Zhang, QG, Liu, SQ,     More...

    ANGEWANDTE CHEMIE-INTERNATIONAL EDITION[1433-7851], Published 2022, Volume 61, Issue 30,

    收錄情况: WOS SCOPUS

    WOS核心合集引用: 41  2023影響因子:  16.1  发表年影響因子:  16.6 

    4.High-Efficiency Semitransparent Light-Emitting Diodes with Perovskite Nanocrystals

    Wan, Q, Huang, L, Ko     More...

    ACS APPLIED MATERIALS & INTERFACES[1944-8244], Published 2022, Volume 14, Issue 17, Pages 19697-19703

    收錄情况: WOS SCOPUS

    WOS核心合集引用:  2023影響因子:  8.5  发表年影響因子:  9.5 

    5.Suppressing thermal quenching of lead halide perovskite nanocrystals by constructing a wide-bandgap surface layer for achieving thermally stable white light-emitting diodes

    Zhang, QG, He, MD, W     More...

    CHEMICAL SCIENCE[2041-6520], Published 2022, Volume 13, Issue 13, Pages 3719-3727

    收錄情况: WOS SCOPUS

    WOS核心合集引用: 29  2023影響因子:  7.6  发表年影響因子:  8.4 

    6.Simultaneous reduction and sequestration of hexavalent chromium by magnetic beta-Cyclodextrin stabilized Fe3S4

    Kong, L, Yan, RX, Li     More...

    JOURNAL OF HAZARDOUS MATERIALS[0304-3894], Published 2022, Volume 431,

    收錄情况: WOS SCOPUS

    WOS核心合集引用: 28  2023影響因子:  12.2  发表年影響因子:  13.6 

    7.Magnetic Adsorbents for Wastewater Treatment: Advancements in Their Synthesis Methods

    Phouthavong, V, Yan,     More...

    MATERIALS[1996-1944], Published 2022, Volume 15, Issue 3,

    收錄情况: WOS SCOPUS

    WOS核心合集引用: 29  2023影響因子:  3.1  发表年影響因子:  3.4 

    8.Rapid preparation of spinel Co3O4 nanocrystals in aqueous phase by microwave irradiation

    Li, L, Ren, JC

    MATERIALS RESEARCH BULLETIN[0025-5408], Published 2006, Volume 41, Issue 12, Pages 2286-2290

    收錄情况: WOS SCOPUS

    WOS核心合集引用: 26  2023影響因子:  5.3  发表年影響因子:  1.383 

    9.Aqueous synthesis of CdTe@FeOOH and CdTe@Ni(OH)(2) composited nanoparticles

    Li, L, Ren, JC

    JOURNAL OF SOLID STATE CHEMISTRY[0022-4596], Published 2006, Volume 179, Issue 6, Pages 1814-1820

    收錄情况: WOS SCOPUS

    WOS核心合集引用: 14  2023影響因子:  3.2  发表年影響因子:  2.107 

    10.Narrow-Band Violet-Light-Emitting Diodes Based on Stable Cesium Lead Chloride Perovskite Nanocrystals

    Zhang, CY, Wan, Q, O     More...

    ACS ENERGY LETTERS[2380-8195], Published 2021, Volume 6, Issue 10, Pages 3545-3554

    收錄情况: WOS SCOPUS

    WOS核心合集引用: 42  2023影響因子:  19.5  发表年影響因子:  23.991 

    11.Integrated solar cells with non-toxic inorganic nanocrystals and polymer bulk heterojunction

    Liu, M, Yan, NQ, Zha     More...

    APPLIED SURFACE SCIENCE ADVANCES[2666-5239], Published 2021, Volume 3,

    收錄情况: WOS SCOPUS

    WOS核心合集引用:  2023影響因子:  7.5 

    12.Highly luminescent CdTe quantum dots prepared in aqueous phase as an alternative fluorescent probe for cell imaging

    Weng, JF, Song, XT,     More...

    TALANTA[0039-9140], Published 2006, Volume 70, Issue 2, Pages 397-402

    收錄情况: WOS SCOPUS

    WOS核心合集引用: 117  2023影響因子:  5.6  发表年影響因子:  2.810 

    13.A resonance energy transfer between chemiluminescent donors and luminescent quantum-dots as acceptors (CRET)

    Huang, XY, Li, L, Qi     More...

    ANGEWANDTE CHEMIE-INTERNATIONAL EDITION[1433-7851], Published 2006, Volume 45, Issue 31, Pages 5140-5143

    收錄情况: WOS SCOPUS

    WOS核心合集引用: 206  2023影響因子:  16.1  发表年影響因子:  10.232 

    14.Exploring feasibility for application of luminescent CdTe quantum dots prepared in aqueous phase to live cell imaging

    Weng, JF, Song, XT,     More...

    CHINESE CHEMICAL LETTERS[1001-8417], Published 2006, Volume 17, Issue 5, Pages 675-678

    收錄情况: WOS SCOPUS

    WOS核心合集引用:  2023影響因子:  9.4  发表年影響因子:  0.266 

    15.State of the Art and Prospects for Halide Perovskite Nanocrystals

    Dey, A, Ye, JZ, De,     More...

    ACS NANO[1936-0851], Published 2021, Volume 15, Issue 7, Pages 10775-10981

    收錄情况: WOS SCOPUS

    WOS核心合集引用: 762  2023影響因子:  15.8  发表年影響因子:  18.027 

    16.Band Gap Engineering toward Wavelength Tunable CsPbBr3 Nanocrystals for Achieving Rec. 2020 Displays

    Zhang, QG, Sun, XCA,     More...

    CHEMISTRY OF MATERIALS[0897-4756], Published 2021, Volume 33, Issue 10, Pages 3575-3584

    收錄情况: WOS SCOPUS

    WOS核心合集引用: 34  2023影響因子:  7.2  发表年影響因子:  10.508 

    17.Evenly distribution of amorphous iron sulfides on reconstructed Mg-Al hydrotalcites for improving Cr(VI) removal efficiency

    Yan, RX, Feng, XP, K     More...

    CHEMICAL ENGINEERING JOURNAL[1385-8947], Published 2021, Volume 417,

    收錄情况: WOS SCOPUS

    WOS核心合集引用: 20  2023影響因子:  13.4  发表年影響因子:  16.744 

    18.Nano ferric oxide adsorbents with self-acidification effect for efficient adsorption of Sb(V)

    Feng, XP, Yan, RX, Z     More...

    CHEMOSPHERE[0045-6535], Published 2021, Volume 272,

    收錄情况: WOS SCOPUS

    WOS核心合集引用: 10  2023影響因子:  8.1  发表年影響因子:  8.943 

    19.Confined Synthesis of Stable and Uniform CsPbBr3 Nanocrystals with High Quantum Yield up to 90% by High Temperature Solid-State Reaction

    Zhang, QG, Zheng, WL     More...

    ADVANCED OPTICAL MATERIALS[2195-1071], Published 2021, Volume 9, Issue 11,

    收錄情况: WOS SCOPUS

    WOS核心合集引用: 50  2023影響因子:  8.0  发表年影響因子:  10.050 

    20.Suppression of temperature quenching in perovskite nanocrystals for efficient and thermally stable light-emitting diodes

    Liu, MM, Wan, Q, Wan     More...

    NATURE PHOTONICS[1749-4885], Published 2021, Volume 15, Issue 5, Pages 379-385

    收錄情况: WOS SCOPUS

    WOS核心合集引用: 303  2023影響因子:  32.3  发表年影響因子:  39.728 

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