1. Rhenium Complex with Noninnocent Dioxolene Ligand: Combined Experimental and ab Initio Study of [(3,5-di-tert-Bu2C6H2O2)ReCl3(OPPh3)]

    Abramov, P. A., Gritsan, N. P., Suturina, E. A., Bogomyakov, A. S. & Sokolov, M. N., 20 Jul 2015, In: Inorganic Chemistry. 54, 14, p. 6727-6735 9 p.

    Research output: Contribution to journalArticlepeer-review

  2. Role of the Water–Rock System in the Formation of the Composition of Radon Water of the Tulinskoe Field (Novosibirsk)

    Novikov, D. A., Pyryaev, A. N., Sukhorukov, V. P., Maksimova, A. A., Derkachev, A. S., Sukhorukova, A. F., Dultsev, F. F., Chernykh, A. V., Khvashchevskaya, A. A. & Medeshova, N. A., 27 Sept 2024, In: Russian Geology and Geophysics.

    Research output: Contribution to journalArticlepeer-review

  3. Room-temperature distance measurements using RIDME and the orthogonal spin labels trityl/nitroxide

    Kuzhelev, A. A., Krumkacheva, O. A., Shevelev, G. Y., Yulikov, M., Fedin, M. V. & Bagryanskaya, E. G., 21 Apr 2018, In: Physical Chemistry Chemical Physics. 20, 15, p. 10224-10230 7 p.

    Research output: Contribution to journalArticlepeer-review

  4. SABRE: Chemical kinetics and spin dynamics of the formation of hyperpolarization

    Barskiy, D. A., Knecht, S., Yurkovskaya, A. V. & Ivanov, K. L., 30 Nov 2019, In: Progress in Nuclear Magnetic Resonance Spectroscopy. 114-115, p. 33-70 38 p.

    Research output: Contribution to journalReview articlepeer-review

  5. Salts of Sterically Hindered Chalcogen-Varied Herz Cations Including Those with [Te3Cl14]2– and [Te4Cl18]2– Anions

    Makarov, A. Y., Bagryanskaya, I. Y., Volkova, Y. M., Shakirov, M. M. & Zibarev, A. V., 22 Mar 2018, In: European Journal of Inorganic Chemistry. 2018, 11, p. 1322-1332 11 p.

    Research output: Contribution to journalArticlepeer-review

  6. Samarium, Europium, and Gadolinium Complexes with 4-(2,1,3-Benzothiadiazol-4-ylamino)pent-3-en-2-onate

    Sukhikh, T. S., Ogienko, D. S., Bashirov, D. A., Kurat’eva, N. V., Smolentsev, A. I. & Konchenko, S. N., 1 Jan 2019, In: Russian Journal of Coordination Chemistry/Koordinatsionnaya Khimiya. 45, 1, p. 30-35 6 p.

    Research output: Contribution to journalArticlepeer-review

  7. Samarium Polyarsenides Derived from Nanoscale Arsenic

    Schoo, C., Bestgen, S., Egeberg, A., Seibert, J., Konchenko, S. N., Feldmann, C. & Roesky, P. W., 22 Mar 2019, In: Angewandte Chemie - International Edition. 58, 13, p. 4386-4389 4 p.

    Research output: Contribution to journalArticlepeer-review

  8. Samarium Polystibides Derived from Highly Activated Nanoscale Antimony

    Schoo, C., Bestgen, S., Egeberg, A., Klementyeva, S., Feldmann, C., Konchenko, S. N. & Roesky, P. W., 14 May 2018, In: Angewandte Chemie - International Edition. 57, 20, p. 5912-5916 5 p.

    Research output: Contribution to journalArticlepeer-review

  9. Samarocene oxide: From an undesired decomposition product to a new reagent

    Schoo, C., Klementyeva, S. V., Gamer, M. T., Konchenko, S. N. & Roesky, P. W., 2016, In: Chemical Communications. 52, 40, p. 6654-6657 4 p.

    Research output: Contribution to journalArticlepeer-review

  10. Scalable and Cost-Effective Approach for Multiple NO2 Removal using the MOF-801 Framework

    Albrekht, Y. N., Efremov, A. A., Burueva, D. B., Smirnova, K. A., Veber, S. L., Poryvaev, A. S. & Fedin, M. V., 29 May 2025, In: Small. 21, 30, p. e2503196 2503196.

    Research output: Contribution to journalArticlepeer-review

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