1. 2022
  2. Integrating direct reuse and extraction recovery of TEMPO for production of cellulose nanofibrils

    Chen, S., Yue, N., Cui, M., Penkova, A., Huang, R., Qi, W., He, Z. & Su, R., 15 Oct 2022, In: Carbohydrate Polymers. 294, 119803.

    Research output: Contribution to journalArticlepeer-review

  3. Injectable self-healing nanocellulose hydrogels crosslinked by aluminum: Cellulose nanocrystals vs. cellulose nanofibrils

    Lin, Z., Huang, R., Wu, J., Пенькова, А. В., Qi, W., He, Z. & Su, R., 1 Oct 2022, In: Chinese Journal of Chemical Engineering. 50, p. 389-397

    Research output: Contribution to journalArticlepeer-review

  4. Novel mixed matrix membranes based on polyelectrolyte complex modified with fullerene derivatives for enhanced pervaporation and nanofiltration

    Dmitrenko, M. E., Kuzminova, A. I., Zolotarev, A. A., Korniak, A. S., Ermakov, S. S., Su, R. & Penkova, A. V., 1 Oct 2022, In: Separation and Purification Technology. 298, 121649.

    Research output: Contribution to journalArticlepeer-review

  5. Special issue: emerging materials in nanofiltration membranes

    Jacob, J., Penkova, A. V. & Thomas, S., 1 Oct 2022, In: Emergent Materials. 5, 5, p. 1261-1262 2 p.

    Research output: Contribution to journalEditorialpeer-review

  6. Superhydrophobic, elastic and anisotropic cellulose nanofiber aerogels for highly effective oil/water separation

    Qiao, A., Huang, R., Penkova, A., Qi, W., He, Z. & Su, R., 15 Aug 2022, In: Separation and Purification Technology. 295, 121266.

    Research output: Contribution to journalArticlepeer-review

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