
Publications of Niklas Huber
All genres
Journal Article (10)
1.
Journal Article
63 (18), e202400101 (2024)
Triazine Frameworks for the Photocatalytic Selective Oxidation of Toluene. Angewandte Chemie International Edition 2.
Journal Article
4 (8), pp. 5728 - 5736 (2022)
Water-Compatible Poly(methyl methacrylate) Networks for Visible Light-Driven Photocatalytic Pollutant Remediation in Aqueous Medium. ACS Applied Polymer Materials 3.
Journal Article
13 (15), pp. 3410 - 3413 (2021)
Visible Light-Promoted Aryl Azoline Formation over Mesoporous Organosilica as Heterogeneous Photocatalyst. ChemCatChem 4.
Journal Article
10 (7), pp. 2092 - 2099 (2020)
A PMMA-based heterogeneous photocatalyst for visible light-promoted [4+2] cycloaddition. Catalysis Science & Technology 5.
Journal Article
8 (3), pp. 1072 - 1076 (2020)
Dispersible porous classical polymer photocatalysts for visible light-mediated production of pharmaceutically relevant compounds in multiple solvents. Journal of Materials Chemistry A 6.
Journal Article
124 (45), pp. 25028 - 25037 (2020)
Lateral Size Dependence in FRET between Semiconductor Nanoplatelets and Conjugated Fluorophores. The Journal of Physical Chemistry C 7.
Journal Article
59 (42), pp. 18368 - 18373 (2020)
Covalent Triazine Framework Nanoparticles via Size-Controllable Confinement Synthesis for Enhanced Visible-Light Photoredox Catalysis. Angewandte Chemie International Edition 8.
Journal Article
140, 110060 (2020)
Porous aromatic frameworks with precisely controllable conjugation lengths for visible light-driven photocatalytic selective C-H activation reactions. European Polymer Journal 9.
Journal Article
52 (24), pp. 9703 - 9714 (2019)
Competitive Copolymerization: Access to Azridine Copolymers with Adjustable Gradient Strengths. Macromolecules 10.
Journal Article
58 (31), pp. 10567 - 10571 (2019)
Dual-Responsive Photocatalytic Polymer Nanogels. Angewandte Chemie International Edition Thesis - PhD (1)
11.
Thesis - PhD
Novel design concepts for visible-light-active semiconductor photocatalysts. Dissertation, Johannes Gutenberg-Universität, Mainz (2021)