Works matching Electron Affinity


Results: 1981
    1
    2
    3
    4
    5
    6
    7
    8
    9
    10
    11
    12
    13
    14
    15
    16

    Experimental and DFT Studies of the Electron‐Withdrawing Ability of Perfluoroalkyl (R<sub>F</sub>) Groups: Electron Affinities of PAH(R<sub>F</sub>)<sub><italic>n</italic></sub> Increase Significantly with Increasing R<sub>F</sub> Chain Length.

    Published in:
    Chemistry - A European Journal, 2018, v. 24, n. 6, p. 1441, doi. 10.1002/chem.201704868
    By:
    • San, Long K.;
    • Spisak, Sarah N.;
    • Dubceac, Cristina;
    • Deng, Shihu H. M.;
    • Kuvychko, Igor V.;
    • Petrukhina, Marina A.;
    • Wang, Xue‐bin;
    • Popov, Alexey A.;
    • Strauss, Steven H.;
    • Boltalina, Olga V.
    Publication type:
    Article
    17
    18
    19
    20
    21
    22
    23
    24
    25
    26

    Electron‐Affinity Substituent in 2,6‐Dicarbonitrile Diphenyl‐1λ<sup>5</sup>‐Phosphinine Towards High‐Quality Organic Lasing and Electroluminescence under High Current Injection.

    Published in:
    Advanced Functional Materials, 2021, v. 31, n. 43, p. 1, doi. 10.1002/adfm.202104529
    By:
    • Tang, Xun;
    • Balijapalli, Umamahesh;
    • Okada, Daichi;
    • Karunathilaka, Buddhika S. B.;
    • Senevirathne, Chathuranganie A. M.;
    • Lee, Yi‐Ting;
    • Feng, Zhao;
    • Sandanayaka, Atula S. D.;
    • Matsushima, Toshinori;
    • Adachi, Chihaya
    Publication type:
    Article
    27
    28
    29
    30
    31
    32
    33
    34

    Tunable Dopants with Intrinsic Counterion Separation Reveal the Effects of Electron Affinity on Dopant Intercalation and Free Carrier Production in Sequentially Doped Conjugated Polymer Films.

    Published in:
    Advanced Functional Materials, 2020, v. 30, n. 28, p. 1, doi. 10.1002/adfm.202001800
    By:
    • Aubry, Taylor J.;
    • Winchell, K. J.;
    • Salamat, Charlene Z.;
    • Basile, Victoria M.;
    • Lindemuth, Jeffrey R.;
    • Stauber, Julia M.;
    • Axtell, Jonathan C.;
    • Kubena, Rebecca M.;
    • Phan, Minh D.;
    • Bird, Matthew J.;
    • Spokoyny, Alexander M.;
    • Tolbert, Sarah H.;
    • Schwartz, Benjamin J.
    Publication type:
    Article
    35
    36
    37

    High-precision electron affinity of oxygen.

    Published in:
    Nature Communications, 2022, v. 13, n. 1, p. 1, doi. 10.1038/s41467-022-33438-y
    By:
    • Kristiansson, Moa K.;
    • Chartkunchand, Kiattichart;
    • Eklund, Gustav;
    • Hole, Odd M.;
    • Anderson, Emma K.;
    • de Ruette, Nathalie;
    • Kamińska, Magdalena;
    • Punnakayathil, Najeeb;
    • Navarro-Navarrete, José E.;
    • Sigurdsson, Stefan;
    • Grumer, Jon;
    • Simonsson, Ansgar;
    • Björkhage, Mikael;
    • Rosén, Stefan;
    • Reinhed, Peter;
    • Blom, Mikael;
    • Källberg, Anders;
    • Alexander, John D.;
    • Cederquist, Henrik;
    • Zettergren, Henning
    Publication type:
    Article
    38
    39

    Electron affinity of liquid water.

    Published in:
    Nature Communications, 2018, v. 9, n. 1, p. 1, doi. 10.1038/s41467-017-02673-z
    By:
    • Gaiduk, Alex P.;
    • Tuan Anh Pham;
    • Govoni, Marco;
    • Paesani, Francesco;
    • Galli, Giulia
    Publication type:
    Article
    40

    The electron affinity of astatine.

    Published in:
    Nature Communications, 2020, v. 11, n. 1, p. 1, doi. 10.1038/s41467-020-17599-2
    By:
    • Leimbach, David;
    • Karls, Julia;
    • Guo, Yangyang;
    • Ahmed, Rizwan;
    • Ballof, Jochen;
    • Bengtsson, Lars;
    • Boix Pamies, Ferran;
    • Borschevsky, Anastasia;
    • Chrysalidis, Katerina;
    • Eliav, Ephraim;
    • Fedorov, Dmitry;
    • Fedosseev, Valentin;
    • Forstner, Oliver;
    • Galland, Nicolas;
    • Garcia Ruiz, Ronald Fernando;
    • Granados, Camilo;
    • Heinke, Reinhard;
    • Johnston, Karl;
    • Koszorus, Agota;
    • Köster, Ulli
    Publication type:
    Article
    41
    42
    43
    44
    45
    46
    47
    48
    49
    50