Deutsche Gesellschaft für Sonnenenergie. Copper indium diselenide (CIS) cell. Planning and Installing Photovoltaic Systems: A Guide for Installers, Architects and Engineers. Earthscan. 2008: 43–44 [2019-08-10]. ISBN 978-1-84407-442-6. (原始内容存档于2020-03-16).
Azzolini, O.; Beeman, J. W.; Bellini, F.; Beretta, M.; Biassoni, M.; Brofferio, C.; Bucci, C.; Capelli, S.; et al. Measurement of the 2νββ Decay Half-Life of 82Se with the Global CUPID-0 Background Model. Physical Review Letters. 2023-11-29, 131 (22). ISSN 0031-9007. doi:10.1103/PhysRevLett.131.222501.
Jafar, Mousa M. Abdul-Gader; Saleh, Mahmoud H.; Ahmad, Mais Jamil A.; Bulos, Basim N.; Al-Daraghmeh, Tariq M. Retrieval of optical constants of undoped amorphous selenium films from an analysis of their normal-incidence transmittance spectra using numeric PUMA method. Journal of Materials Science: Materials in Electronics. 2016-04-01, 27 (4): 3281–3291. ISSN 0957-4522. doi:10.1007/s10854-015-4156-z(英语).
Saleh, Mahmoud H.; Ershaidat, Nidal M.; Ahmad, Mais Jamil A.; Bulos, Basim N.; Jafar, Mousa M. Abdul-Gader. Evaluation of spectral dispersion of optical constants of a-Se films from their normal-incidence transmittance spectra using Swanepoel algebraic envelope approach. Optical Review. 2017-06-01, 24 (3): 260–277. Bibcode:2017OptRv..24..260S. ISSN 1340-6000. doi:10.1007/s10043-017-0311-5(英语).
Minkov, D.A.; Gavrilov, G.M.; Angelov, G.V.; Moreno, J.M.D.; Vazquez, C.G.; Ruano, S.M.F.; Marquez, E. Optimisation of the envelope method for characterisation of optical thin film on substrate specimens from their normal incidence transmittance spectrum. Thin Solid Films. 2018, 645: 370–378. Bibcode:2018TSF...645..370M. doi:10.1016/j.tsf.2017.11.003.
Jörg, Gerhard; Bühnemann, Rolf; Hollas, Simon; et al. Preparation of radiochemically pure 79Se and highly precise determination of its half-life. Applied Radiation and Isotopes. 2010, 68 (12): 2339–2351. PMID 20627600. doi:10.1016/j.apradiso.2010.05.006.
Kelly, P.F.; Slawin, A.M.Z.; Soriano-Rama, A. Use of Se4N4 and Se(NSO)2 in the preparation of palladium adducts of diselenium dinitride, Se2N2; crystal structure of [PPh 4] 2[Pd 2Br 6(Se 2N 2)]. Dalton Transactions. 1997, (4): 559–562. doi:10.1039/a606311j.
Siivari, Jari; Chivers, Tristram; Laitinen, Risto S. A simple, efficient synthesis of tetraselenium tetranitride. Inorganic Chemistry. 1993, 32 (8): 1519–1520. doi:10.1021/ic00060a031.
Erker, G.; Hock, R.; Krüger, C.; Werner, S.; Klärner, F.G.; Artschwager-Perl, U. Synthesis and Cycloadditions of Monomeric Selenobenzophenone. Angewandte Chemie International Edition in English. 1990, 29 (9): 1067–1068. doi:10.1002/anie.199010671.
Waitkins, G. R.; Bearse, A. E.; Shutt, R. Industrial Utilization of Selenium and Tellurium. Industrial & Engineering Chemistry. 1942, 34 (8): 899–910. doi:10.1021/ie50392a002.
Stadtman, Thressa C. Some Functions of the Essential Trace Element, Selenium. Trace Elements in Man and Animals 10. Trace Elements in Man and Animals 10. 2002: 831–836. ISBN 978-0-306-46378-5. doi:10.1007/0-306-47466-2_267.
Schwarz, Klaus; Foltz, Calvin M. Selenium as an Integral Part of Factor 3 Against Dietary Necrotic Liver Degeneration. Journal of the American Chemical Society. 1957, 79 (12): 3292–3293. doi:10.1021/ja01569a087.
Naumov, A. V. Selenium and tellurium: State of the markets, the crisis, and its consequences. Metallurgist. 2010, 54 (3–4): 197–200. doi:10.1007/s11015-010-9280-7.
Sun, Yan; Tian, Xike; He, Binbin; et al. Studies of the reduction mechanism of selenium dioxide and its impact on the microstructure of manganese electrodeposit. Electrochimica Acta. 2011, 56 (24): 8305–8310. doi:10.1016/j.electacta.2011.06.111.
Bernd E. Langner "Selenium and Selenium Compounds" in Ullmann's Encyclopedia of Industrial Chemistry, 2005, Wiley-VCH, Weinheim. doi:10.1002/14356007.a23_525.
Gol'Dshtein, Ya. E.; Mushtakova, T. L.; Komissarova, T. A. Effect of selenium on the structure and properties of structural steel. Metal Science and Heat Treatment. 1979, 21 (10): 741–746. Bibcode:1979MSHT...21..741G. doi:10.1007/BF00708374.
Eftekhari, Ali. The rise of lithium–selenium batteries. Sustainable Energy & Fuels. 2017, 1: 14–29. doi:10.1039/C6SE00094K.
Springett, B. E. Application of Selenium-Tellurium Photoconductors to the Xerographic Copying and Printing Processes. Phosphorus and Sulfur and the Related Elements. 1988, 38 (3–4): 341–350. doi:10.1080/03086648808079729.
Kasap, Safa; Frey, Joel B.; Belev, George; et al. Amorphous selenium and its alloys from early xeroradiography to high resolution X-ray image detectors and ultrasensitive imaging tubes. Physica Status Solidi B. 2009, 246 (8): 1794–1805. Bibcode:2009PSSBR.246.1794K. doi:10.1002/pssb.200982007.
Hai-Fu, F.; Woolfson, M. M.; Jia-Xing, Y. New Techniques of Applying Multi-Wavelength Anomalous Scattering Data. Proceedings of the Royal Society A: Mathematical, Physical and Engineering Sciences. 1993, 442 (1914): 13–32. Bibcode:1993RSPSA.442...13H. doi:10.1098/rspa.1993.0087.
Penichon, Sylvie. Differences in Image Tonality Produced by Different Toning Protocols for Matte Collodion Photographs. Journal of the American Institute for Conservation. 1999, 38 (2): 124–143. JSTOR 3180042. doi:10.2307/3180042.
Saleh, Mahmoud H.; Ershaidat, Nidal M.; Ahmad, Mais Jamil A.; Bulos, Basim N.; Jafar, Mousa M. Abdul-Gader. Evaluation of spectral dispersion of optical constants of a-Se films from their normal-incidence transmittance spectra using Swanepoel algebraic envelope approach. Optical Review. 2017-06-01, 24 (3): 260–277. Bibcode:2017OptRv..24..260S. ISSN 1340-6000. doi:10.1007/s10043-017-0311-5(英语).
Minkov, D.A.; Gavrilov, G.M.; Angelov, G.V.; Moreno, J.M.D.; Vazquez, C.G.; Ruano, S.M.F.; Marquez, E. Optimisation of the envelope method for characterisation of optical thin film on substrate specimens from their normal incidence transmittance spectrum. Thin Solid Films. 2018, 645: 370–378. Bibcode:2018TSF...645..370M. doi:10.1016/j.tsf.2017.11.003.
Gol'Dshtein, Ya. E.; Mushtakova, T. L.; Komissarova, T. A. Effect of selenium on the structure and properties of structural steel. Metal Science and Heat Treatment. 1979, 21 (10): 741–746. Bibcode:1979MSHT...21..741G. doi:10.1007/BF00708374.
Kasap, Safa; Frey, Joel B.; Belev, George; et al. Amorphous selenium and its alloys from early xeroradiography to high resolution X-ray image detectors and ultrasensitive imaging tubes. Physica Status Solidi B. 2009, 246 (8): 1794–1805. Bibcode:2009PSSBR.246.1794K. doi:10.1002/pssb.200982007.
Hai-Fu, F.; Woolfson, M. M.; Jia-Xing, Y. New Techniques of Applying Multi-Wavelength Anomalous Scattering Data. Proceedings of the Royal Society A: Mathematical, Physical and Engineering Sciences. 1993, 442 (1914): 13–32. Bibcode:1993RSPSA.442...13H. doi:10.1098/rspa.1993.0087.
Penichon, Sylvie. Differences in Image Tonality Produced by Different Toning Protocols for Matte Collodion Photographs. Journal of the American Institute for Conservation. 1999, 38 (2): 124–143. JSTOR 3180042. doi:10.2307/3180042.
Jörg, Gerhard; Bühnemann, Rolf; Hollas, Simon; et al. Preparation of radiochemically pure 79Se and highly precise determination of its half-life. Applied Radiation and Isotopes. 2010, 68 (12): 2339–2351. PMID 20627600. doi:10.1016/j.apradiso.2010.05.006.
Deutsche Gesellschaft für Sonnenenergie. Copper indium diselenide (CIS) cell. Planning and Installing Photovoltaic Systems: A Guide for Installers, Architects and Engineers. Earthscan. 2008: 43–44 [2019-08-10]. ISBN 978-1-84407-442-6. (原始内容存档于2020-03-16).
Azzolini, O.; Beeman, J. W.; Bellini, F.; Beretta, M.; Biassoni, M.; Brofferio, C.; Bucci, C.; Capelli, S.; et al. Measurement of the 2νββ Decay Half-Life of 82Se with the Global CUPID-0 Background Model. Physical Review Letters. 2023-11-29, 131 (22). ISSN 0031-9007. doi:10.1103/PhysRevLett.131.222501.
Jafar, Mousa M. Abdul-Gader; Saleh, Mahmoud H.; Ahmad, Mais Jamil A.; Bulos, Basim N.; Al-Daraghmeh, Tariq M. Retrieval of optical constants of undoped amorphous selenium films from an analysis of their normal-incidence transmittance spectra using numeric PUMA method. Journal of Materials Science: Materials in Electronics. 2016-04-01, 27 (4): 3281–3291. ISSN 0957-4522. doi:10.1007/s10854-015-4156-z(英语).
Saleh, Mahmoud H.; Ershaidat, Nidal M.; Ahmad, Mais Jamil A.; Bulos, Basim N.; Jafar, Mousa M. Abdul-Gader. Evaluation of spectral dispersion of optical constants of a-Se films from their normal-incidence transmittance spectra using Swanepoel algebraic envelope approach. Optical Review. 2017-06-01, 24 (3): 260–277. Bibcode:2017OptRv..24..260S. ISSN 1340-6000. doi:10.1007/s10043-017-0311-5(英语).