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Organische und Makromolekulare Chemie
Prof. Dr. Dirk Kuckling

Publikationen 2020


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Polyester resins based on soybean oil: synthesis and characterization

K.I. Aly, J. Sun, D. Kuckling, O. Younis, Journal of Polymer Research (2020), 27

DOI


Dually Crosslinked Supramolecular Hydrogel for Cancer Biomarker Sensing

J. Li, C. Ji, B. Lü, M. Rodin, J. Paradies, M. Yin, D. Kuckling, ACS Applied Materials & Interfaces (2020), 12(33), pp. 36873-36881

DOI


Palladium‐Catalyzed Polycondensation for the Synthesis of Poly(Aryl)Sulfides

P. Hou, P. Oechsle, D. Kuckling, J. Paradies, Macromolecular Rapid Communications (2020), 41(10), 2000067

DOI


Novel Application of Polymer Networks Carrying Tertiary Amines as a Catalyst Inside Microflow Reactors Used for Knoevenagel Reactions

P. Berg, F. Obst, D. Simon, A. Richter, D. Appelhans, D. Kuckling, European Journal of Organic Chemistry (2020), pp. 5765-5774

DOI


Analysis of sequence-defined oligomers through Advanced Polymer Chromatography™ – mass spectrometry hyphenation

M. Berg, C. Mertens, F. Du Prez, T.D. Kühne, A. Herberg, D. Kuckling, RSC Advances (2020), 10, pp. 35245-35252

DOI


Micellar Organocatalysis Using Smart Polymer Supports: Influence of Thermoresponsive Self-Assembly on Catalytic Activity

X. Yu, A. Herberg, D. Kuckling, Polymers (2020), 12(10), 2265

DOI


Investigation of Gel Properties of Novel Cryo-Clay-Silica Polymer Networks

P. Berg, C.D. Prowald, D. Kuckling, Gels (2020), 6(2), 11

DOI


Dually Crosslinked Supramolecular Hydrogel for Cancer Biomarker Sensing

J. Li, C. Ji, B. Lü, M. Rodin, J. Paradies, M. Yin, D. Kuckling, ACS Applied Materials & Interfaces (2020), pp. 36873-36881

DOI


Palladium‐Catalyzed Polycondensation for the Synthesis of Poly(Aryl)Sulfides

P. Hou, P. Oechsle, D. Kuckling, J. Paradies, Macromolecular Rapid Communications (2020), 2000067

DOI


Nanoporous aluminum oxide micropatterns prepared by hydrogel templating

Z. Chen, D. Kuckling, M. Tiemann, Nanotechnology (2020), 31, 445601

Micropatterned nanoporous aluminum oxide arrays are prepared on silicon wafer substrates by using photopolymerized poly(dimethylacrylamide) hydrogels as porogenic matrices. Hydrogel micropatterns are fabricated by spreading the prepolymer mixture on the substrate, followed by UV photopolymerization through a micropatterned mask. The hydrogel is covalently bonded to the substrate surface. Al2O3 is produced by swelling the hydrogel in a saturated aluminum nitrate solution and subsequent thermal conversion/calcination. As a result, micropatterned porous Al2O3 microdots with heights in µm range and large specific surface areas up to 274 m2 g−1 are obtained. Hence, the hydrogel fulfills a dual templating function, namely micropatterning and nanoporosity generation. The impact of varying the photopolymerization time on the properties of the products is studied. Samples are characterized by light and confocal laser scanning microscopy, scanning electron microscopy, energy-dispersive x-ray spectrometry, and Kr physisorption analysis.


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Kontakt

Prof. Dr. Dirk Kuckling

Organische Chemie - Arbeitskreis Kuckling

Professur für Organische und Makromolekulare Chemie

Dirk Kuckling
Telefon:
+49 5251 60-2171
Fax:
+49 5251 60-3245
Büro:
J3.310

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