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Kim Kuntze

Explore the profile of Kim Kuntze including associated specialties, affiliations and a list of published articles. Areas
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Articles 12
Citations 54
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Recent Articles
1.
Kuntze K, Isokuortti J, van der Wal J, Laaksonen T, Crespi S, Durandin N, et al.
Chem Sci . 2024 Aug; 15(30):11684-11698. PMID: 39092110
Photoswitchable molecules that undergo nanoscopic changes upon photoisomerisation can be harnessed to control macroscopic properties such as colour, solubility, shape, and motion of the systems they are incorporated into. These...
2.
Kuntze K, Pooler D, Di Donato M, Hilbers M, van der Meulen P, Buma W, et al.
Chem Sci . 2023 Sep; 14(34):9227. PMID: 37655025
[This corrects the article DOI: 10.1039/D3SC03090C.].
3.
Kuntze K, Pooler D, Di Donato M, Hilbers M, van der Meulen P, Buma W, et al.
Chem Sci . 2023 Aug; 14(32):8458-8465. PMID: 37592992
We present a class of visible-light-driven molecular motors based on barbituric acid. Due to a serendipitous reactivity we observed during their synthesis, these motors possess a tertiary stereogenic centre on...
4.
Liu Q, Zhou Y, Shaukat A, Meng Z, Kyllonen D, Seitz I, et al.
Angew Chem Int Ed Engl . 2023 Apr; 62(28):e202303880. PMID: 37093162
Protein crystallization is an important tool for structural biology and nanostructure preparation. Here, we report on kinetic pathway-dependent protein crystals that are controlled by light. Photo-responsive crystallites are obtained by...
5.
Kuntze K, Viljakka J, Virkki M, Huang C, Hecht S, Priimagi A
Chem Sci . 2023 Mar; 14(10):2482-2488. PMID: 36908950
Through simple synthetic derivatisation, the parent indigo dye becomes a red-light - photoswitch exhibiting negative photochromism and tuneable thermal isomerisation kinetics. These attributes make indigo derivatives extremely attractive for applications...
6.
Fedele C, Ruoko T, Kuntze K, Virkki M, Priimagi A
Photochem Photobiol Sci . 2022 Jul; 21(10):1719-1734. PMID: 35896915
Azobenzenes have many faces. They are well-known as dyes, but most of all, azobenzenes are versatile photoswitchable molecules with powerful photochemical properties. Azobenzene photochemistry has been extensively studied for decades,...
7.
Ghindani D, Issah I, Chervinskii S, Lahikainen M, Kuntze K, Priimagi A, et al.
ACS Photonics . 2022 Jul; 9(7):2287-2294. PMID: 35880073
Actively controllable photoluminescence is potent for a wide variety of applications from biosensing and imaging to optoelectronic components. Traditionally, methods to achieve active emission control are limited due to complex...
8.
Kuntze K, Viljakka J, Titov E, Ahmed Z, Kalenius E, Saalfrank P, et al.
Photochem Photobiol Sci . 2021 Dec; 21(2):159-173. PMID: 34888753
Thermally stable photoswitches that are driven with low-energy light are rare, yet crucial for extending the applicability of photoresponsive molecules and materials towards, e.g., living systems. Combined ortho-fluorination and -amination...
9.
Kuntze K, Isokuortti J, Siiskonen A, Durandin N, Laaksonen T, Priimagi A
J Phys Chem B . 2021 Nov; 125(45):12568-12573. PMID: 34735154
Efficient photoisomerization between the cis and the trans states of azobenzenes using low-energy light is desirable for a range of applications in, e.g., photobiology yet challenging to accomplish directly with...
10.
Chervinskii S, Issah I, Lahikainen M, Rashed A, Kuntze K, Priimagi A, et al.
ACS Appl Mater Interfaces . 2021 Oct; 13(42):50564-50572. PMID: 34643385
A tunable reflectance filter based on a metal-hydrogel-metal structure responsive to humidity and temperature is reported. The filter employs a poly(-isopropylacrylamide)-acrylamidobenzophenone (PNIPAm-BP) hydrogel as an insulator layer in the metal-insulator-metal...