» Authors » Ullrich Scherf

Ullrich Scherf

Explore the profile of Ullrich Scherf including associated specialties, affiliations and a list of published articles. Areas
Snapshot
Articles 131
Citations 734
Followers 0
Related Specialties
Top 10 Co-Authors
Published In
Affiliations
Soon will be listed here.
Recent Articles
11.
Preis E, Schindler N, Adrian S, Scherf U
ACS Macro Lett . 2022 May; 4(11):1268-1272. PMID: 35614826
The cyclotrimerization of commercial, aromatic diisocyanates allows for the formation of monolithic, microporous polymer networks with surface areas up to 1300-1500 m/g. The process has been up-scaled for production of...
12.
Kowalski S, Allard S, Scherf U
ACS Macro Lett . 2022 May; 1(4):465-468. PMID: 35585742
Poly(4,4-dialkyl-cyclopenta[2,1-:3,4-']dithiophene--2,1,3-benzothiadiazole) (PCPDTBT), a potentially interesting low bandgap donor copolymer for bulk heterojunction-type organic solar cells with a power conversion efficiency >5.5%, can be now synthesized in a direct arylation scheme...
13.
Preis E, Widling C, Brunklaus G, Schmidt J, Thomas A, Scherf U
ACS Macro Lett . 2022 May; 2(5):380-383. PMID: 35581842
Acidic self-condensation of 2,7-bis(-carbazolyl)-9-fluorenone produces microporous polymer networks (MPNs) with high Brunauer-Emmett-Teller (BET) surface areas of up to 2250 m/g and hydrogen storage capacities of up to 1.7% (at 1...
14.
Dong W, Fei T, Scherf U
RSC Adv . 2022 May; 8(11):5760-5767. PMID: 35539570
The novel polytriphenylamines derivatives PTPA1-TPE and PTPA2-TPE with TPE as side groups and bis(-butyl)-TPE in the backbones have been successfully synthesized Yamamoto-type coupling under microwave heating. The incorporation of TPE...
15.
Tent J, Ammenhauser R, Braun M, Scherf U
RSC Adv . 2022 Apr; 11(8):4654-4659. PMID: 35424403
In this report, syntheses and subsequent electropolymerization of a series of five rigid tricarbazole monomers are described. The monomers involve three planar triphenylene-cored tricarbazole-benzenes (with the carbazole units connected their...
16.
Heimfarth D, Balci Leinen M, Klein P, Allard S, Scherf U, Zaumseil J
ACS Appl Mater Interfaces . 2022 Feb; 14(6):8209-8217. PMID: 35108486
Organic electrochemical transistors (ECTs) are an important building block for bioelectronics. To promote the required ion transport through the active layer, state-of-the-art semiconducting polymers feature hydrophilic ethylene glycol side chains...
17.
Zasedatelev A, Baranikov A, Sannikov D, Urbonas D, Scafirimuto F, Shishkov V, et al.
Nature . 2021 Dec; 600(7889):E19. PMID: 34857939
No abstract available.
18.
Zasedatelev A, Baranikov A, Sannikov D, Urbonas D, Scafirimuto F, Shishkov V, et al.
Nature . 2021 Sep; 597(7877):493-497. PMID: 34552252
The recent progress in nanotechnology and single-molecule spectroscopy paves the way for emergent cost-effective organic quantum optical technologies with potential applications in useful devices operating at ambient conditions. We harness...
19.
Wetterling D, Forster M, B Rodrigues A, Seixas de Melo J, Scherf U
Macromol Rapid Commun . 2021 Jul; 42(19):e2100370. PMID: 34254716
Polycationic stepladder polymers containing 5,12-diazapentacenium bistriflate repeat units are made in a two-step sequence of a carbon-nitrogen cross coupling polymerization and subsequent postpolymerization cyclization. The deeply colored products show a...
20.
Sajjad M, Bansal A, Antolini F, Preis E, Stroea L, Toffanin S, et al.
Nanomaterials (Basel) . 2021 Apr; 11(5). PMID: 33922440
Many displays involve the use of color conversion layers. QDs are attractive candidates as color converters because of their easy processability, tuneable optical properties, high photoluminescence quantum yield, and good...