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14, 7104 (2023)
Metal-free photoanodes for C–H functionalization. Nature Communications 182.
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35 (15), 2209310 (2023)
In-situ synthesis of –P=N-doped carbon nanofibers for single atom catalytic hydrosilylation. Advanced Materials 183.
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29 (7), e202202469 (2023)
Rational design of a triple tumor microenvironment-responsive nanoplatform for enhanced tumor theranostics. Chemistry – A European Journal 184.
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12 (9), 2202373 (2023)
Submicron-sized in-situ osmotic pressure sensors for in-vitro applications in biology. Advanced Healthcare Materials 185.
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10 (28), 2302623 (2023)
Coordinative stabilization of single bismuth sites in a carbon–nitrogen matrix to generate atom-efficient catalysts for electrochemical nitrate reduction to ammonia. Advanced Science 186.
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16 (12), pp. 1951 - 1961 (2023)
Synthetic biology identifies the minimal gene set required for Paclitaxel biosynthesis in a plant chassis. Molecular Plant 187.
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13 (1), pp. 824 - 836 (2023)
Mechanistic and structural insights into the specificity and biological functions of bacterial sulfoglycosidases. ACS Catalysis 188.
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15 (4), e202201279 (2023)
Defect-induced activity enhancement of self-exfoliated carbon nitrides for solar hydrogen evolution. ChemCatChem 189.
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35 (7), pp. 2762 - 2772 (2023)
Induced mineralization of hydroxyapatite in Escherichia coli biofilms and the potential role of bacterial alkaline phosphatase. Chemistry of Materials 190.
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15 (35), pp. 14595 - 14605 (2023)
Non-classical crystallization of CeO2 by means of in situ electron microscopy. Nanoscale Book (2)
191.
Book
Carbon nitrides: structure, properties and applications in science and technology. De Gruyter, Berlin (2023), 376 Seiten pp.
192.
Book
Carbon nitrides: structure, properties and applications in science and technology. De Gruyter, Berlin, Boston (2023), X, 376 Seiten pp.
Book Chapter (7)
193.
Book Chapter
Chapter 1. Celebrating 200 years of carbon nitride. In: Carbon nitrides: structure, properties and applications in science and technology, pp. 1 - 4 (Eds. Savateev, O.; Antonietti, M.; Wang, X.). De Gruyter, Berlin, Boston (2023)
194.
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Chapter 14. Looking into the crystal ball of a sustainable future chemistry with carbon nitride. In: Carbon nitrides: structure, properties and applications in science and technology, pp. 367 - 372 (Eds. Savateev, O.; Antonietti, M.; Wang, X.). De Gruyter, Berlin, Boston (2023)
195.
Book Chapter
Chapter 12. Carbon nitride thin films as a high refractive index optical material. In: Carbon nitrides: structure, properties and applications in science and technology, pp. 321 - 344 (Eds. Savateev, O.; Antonietti, M.; Wang, X.). De Gruyter, Berlin, Boston (2023)
196.
Book Chapter
Selective oxidation of alcohols using carbon nitride photocatalysts. In: UV-visible photocatalysis for clean energy production and pollution remediation, pp. 27 - 40 (Eds. Wang, X.; Anpo, M.; Fu, X.). Wiley-VCH GmbH, Weinheim (2023)
197.
Book Chapter
Chapter 2. Classification, synthesis and structure of carbon nitrides. In: Carbon nitrides: structure, properties and applications in science and technology, pp. 5 - 36 (Eds. Savateev, O.; Antonietti, M.; Wang, X.). De Gruyter, Berlin, Boston (2023)
198.
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Chapter 8. Carbon nitride organic photocatalysis. In: Carbon nitrides: structure, properties and applications in science and technology, pp. 177 - 230 (Eds. Savateev, O.; Antonietti, M.; Wang, X.). De Gruyter, Berlin, Boston (2023)
199.
Book Chapter
Carbon nitrides and titanium dioxide-based photocatalysis outlook and challenges: an overview of hydrogen production, transport, storage, safety, and principles. In: Renewable Energy Production and Distribution, pp. 145 - 180 (Eds. Jeguirim, M.; Dutournié, P.). Academic Press (2023)
Thesis - PhD (21)
200.
Thesis - PhD
Microenvironment-mediated cancer dormancy and metastasis: implications for cell biophysics and biology. Dissertation, Technische Universität, Berlin (2023)