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22 Publications


2024 | Journal Article | IST-REx-ID: 14828
Kiran, G. K., Singh, S., Mahato, N., Sreekanth, T. V. M., Dillip, G. R., Yoo, K., & Kim, J. (2024). Interface engineering modulation combined with electronic structure modification of Zn-doped NiO heterostructure for efficient water-splitting activity. ACS Applied Energy Materials. American Chemical Society. https://doi.org/10.1021/acsaem.3c02519
View | DOI | WoS
 

2023 | Journal Article | IST-REx-ID: 14733 | OA
Jethwa, R. B., Hey, D., Kerber, R. N., Bond, A. D., Wright, D. S., & Grey, C. P. (2023). Exploring the landscape of heterocyclic quinones for redox flow batteries. ACS Applied Energy Materials. American Chemical Society. https://doi.org/10.1021/acsaem.3c02223
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2023 | Journal Article | IST-REx-ID: 14831 | OA
Sakref, Y., Muñoz Basagoiti, M., Zeravcic, Z., & Rivoire, O. (2023). On kinetic constraints that catalysis imposes on elementary processes. The Journal of Physical Chemistry B. American Chemical Society. https://doi.org/10.1021/acs.jpcb.3c04627
[Preprint] View | DOI | Download Preprint (ext.) | WoS | arXiv
 

2022 | Journal Article | IST-REx-ID: 13347 | OA
Yanshyna, O., Białek, M. J., Chashchikhin, O. V., & Klajn, R. (2022). Encapsulation within a coordination cage modulates the reactivity of redox-active dyes. Communications Chemistry. Springer Nature. https://doi.org/10.1038/s42004-022-00658-8
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2022 | Journal Article | IST-REx-ID: 13351 | OA
Gemen, J., & Klajn, R. (2022). Electron catalysis expands the supramolecular chemist’s toolbox. Chem. Elsevier. https://doi.org/10.1016/j.chempr.2022.04.022
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2022 | Journal Article | IST-REx-ID: 13350 | OA
Gemen, J., Białek, M. J., Kazes, M., Shimon, L. J. W., Feller, M., Semenov, S. N., … Klajn, R. (2022). Ternary host-guest complexes with rapid exchange kinetics and photoswitchable fluorescence. Chem. Elsevier. https://doi.org/10.1016/j.chempr.2022.05.008
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2022 | Journal Article | IST-REx-ID: 13353 | OA
Yanshyna, O., Avram, L., Shimon, L. J. W., & Klajn, R. (2022). Coexistence of 1:1 and 2:1 inclusion complexes of indigo carmine. Chemical Communications. Royal Society of Chemistry. https://doi.org/10.1039/d1cc07081a
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2022 | Journal Article | IST-REx-ID: 12227 | OA
Kovačič, S., Schafzahl, B., Matsko, N. B., Gruber, K., Schmuck, M., Koller, S., … Slugovc, C. (2022). Carbon foams via ring-opening metathesis polymerization of emulsion templates: A facile method to make carbon current collectors for battery applications. ACS Applied Energy Materials. American Chemical Society. https://doi.org/10.1021/acsaem.2c02787
[Published Version] View | Files available | DOI | WoS
 

2022 | Journal Article | IST-REx-ID: 12237 | OA
Fiedler, C., Kleinhanns, T., Garcia, M., Lee, S., Calcabrini, M., & Ibáñez, M. (2022). Solution-processed inorganic thermoelectric materials: Opportunities and challenges. Chemistry of Materials. American Chemical Society. https://doi.org/10.1021/acs.chemmater.2c01967
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2021 | Journal Article | IST-REx-ID: 13359 | OA
Weißenfels, M., Gemen, J., & Klajn, R. (2021). Dissipative self-assembly: Fueling with chemicals versus light. Chem. Elsevier. https://doi.org/10.1016/j.chempr.2020.11.025
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2021 | Journal Article | IST-REx-ID: 9447
Maffre, M., Bouchal, R., Freunberger, S. A., Lindahl, N., Johansson, P., Favier, F., … Bélanger, D. (2021). Investigation of electrochemical and chemical processes occurring at positive potentials in “Water-in-Salt” electrolytes. Journal of The Electrochemical Society. IOP Publishing. https://doi.org/10.1149/1945-7111/ac0300
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2021 | Journal Article | IST-REx-ID: 15260 | OA
Cimada daSilva, J., Balazs, D., Dunbar, T. A., & Hanrath, T. (2021). Fundamental processes and practical considerations of lead chalcogenide mesocrystals formed via self-assembly and directed attachment of nanocrystals at a fluid interface. Chemistry of Materials. American Chemical Society. https://doi.org/10.1021/acs.chemmater.1c02910
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2021 | Journal Article | IST-REx-ID: 15265
Ghosh, T., Roychowdhury, S., Dutta, M., & Biswas, K. (2021). High-performance thermoelectric energy conversion: A tale of atomic ordering in AgSbTe2. ACS Energy Letters. American Chemical Society. https://doi.org/10.1021/acsenergylett.1c01184
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2019 | Journal Article | IST-REx-ID: 13371 | OA
Białek, M. J., & Klajn, R. (2019). Diamond grows up. Chem. Elsevier. https://doi.org/10.1016/j.chempr.2019.08.012
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2018 | Journal Article | IST-REx-ID: 10357
Dear, A. J., Šarić, A., Michaels, T. C. T., Dobson, C. M., & Knowles, T. P. J. (2018). Statistical mechanics of globular oligomer formation by protein molecules. The Journal of Physical Chemistry B. American Chemical Society. https://doi.org/10.1021/acs.jpcb.8b07805
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2018 | Journal Article | IST-REx-ID: 13379 | OA
Bléger, D., & Klajn, R. (2018). Integrating macromolecules with molecular switches. Macromolecular Rapid Communications. Wiley. https://doi.org/10.1002/marc.201700827
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2018 | Journal Article | IST-REx-ID: 15107
Roy, S., Roy, S., Rao, A., Devatha, G., & Pillai, P. P. (2018). Precise nanoparticle–reactant interaction outplays ligand poisoning in visible-light photocatalysis. Chemistry of Materials. American Chemical Society. https://doi.org/10.1021/acs.chemmater.8b03108
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2016 | Journal Article | IST-REx-ID: 8455
Kurauskas, V., Crublet, E., Macek, P., Kerfah, R., Gauto, D. F., Boisbouvier, J., & Schanda, P. (2016). Sensitive proton-detected solid-state NMR spectroscopy of large proteins with selective CH3labelling: Application to the 50S ribosome subunit. Chemical Communications. Royal Society of Chemistry. https://doi.org/10.1039/c6cc04484k
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2016 | Journal Article | IST-REx-ID: 8453
Kurauskas, V., Weber, E., Hessel, A., Ayala, I., Marion, D., & Schanda, P. (2016). Cross-correlated relaxation of dipolar coupling and chemical-shift anisotropy in magic-angle spinning R1ρ NMR measurements: Application to protein backbone dynamics measurements. The Journal of Physical Chemistry B. American Chemical Society. https://doi.org/10.1021/acs.jpcb.6b06129
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2015 | Journal Article | IST-REx-ID: 13395 | OA
Lee, J.-W., & Klajn, R. (2015). Dual-responsive nanoparticles that aggregate under the simultaneous action of light and CO2. Chemical Communications. Royal Society of Chemistry. https://doi.org/10.1039/c4cc08541h
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