Extension of nature's NIR-I chromophore into the NIR-II region

K Siwawannapong, JR Diers… - Physical Chemistry …, 2024 - pubs.rsc.org
The development of chromophores that absorb in the near-infrared (NIR) region beyond
1000 nm underpins numerous applications in medical and energy sciences, yet also …

Dyads with tunable near-infrared donor–acceptor excited-state energy gaps: molecular design and Förster analysis for ultrafast energy transfer

H Jing, NCM Magdaong, JR Diers, C Kirmaier… - Physical Chemistry …, 2023 - pubs.rsc.org
Bacteriochlorophylls, nature's near-infrared absorbers, play an essential role in energy
transfer in photosynthetic antennas and reaction centers. To probe energy-transfer …

Dihydrooxazine Byproduct of a McMurry–Melton Reaction en Route to a Synthetic Bacteriochlorin

VP Tran, N Matsumoto, P Nalaoh, H Jing, CY Chen… - Organics, 2022 - mdpi.com
A synthetic route to gem-dimethyl-substituted bacteriochlorins—models of native
bacteriochlorophylls—relies on the formation of a dihydrodipyrrin precursor via a series of …

[PDF][PDF] Structure of (R, R)-4-bromo-2-{4-[4-bromo-1-(4-toluenesulfonyl)-1H-pyrrol-2-yl]-1, 3-dinitrobutan-2-yl}-1-(4-toluenesulfonyl)-1H-pyrrole, another ostensible by …

HC Sample, B Twamley, MO Senge - … Crystallographica Section E …, 2023 - journals.iucr.org
The crystal structure of (R, R)-4-bromo-2-{4-[4-bromo-1-(4-toluenesulfonyl)-1H-pyrrol-2-yl]-1,
3-dinitrobutan-2-yl}-1-(4-toluenesulfonyl)-1H-pyrrole (1, C26H24Br2N4O8S2) is presented …

On the Utilization of geminal-Dimethyl Hydroporphyrins and Tetraphenylethylenes in Photodynamic Therapy

HC Sample - 2022 - estudogeral.uc.pt
Chapter 1 introduces the main concepts of this thesis: photodynamic therapy (PDT), chlorins
and photosensitizer arrays. In the case of PDT multiple topics are discussed, namely, the …

[引用][C] Bacteriochlorin syntheses-Status, problems, and exploration

VP Tran, P Wang, N Matsumoto, S Liu… - Journal of Porphyrins …, 2023 - World Scientific
Bacteriochlorins–Nature's near-infrared (NIR) chromophores–are distinguished by an
intense (𝜀∼; 105 M− 1 cm− 1) long-wavelength absorption band in the∼; 700–1000 nm …