Recent progress in homogeneous light-driven hydrogen evolution using first-row transition metal catalysts

A Mazzeo, S Santalla, C Gaviglio, F Doctorovich… - Inorganica Chimica …, 2021 - Elsevier
The rich chemistry, low cost and availability offered by first-row transition metals have
inspired many researchers to focus on the design, preparation and testing of a wide plethora …

Factors that Impact Photochemical Cage Escape Yields

MJ Goodwin, JC Dickenson, A Ripak, AM Deetz… - Chemical …, 2024 - ACS Publications
The utilization of visible light to mediate chemical reactions in fluid solutions has
applications that range from solar fuel production to medicine and organic synthesis. These …

BODIPY-ruthenium (II) bis-terpyridine complexes for cellular imaging and type-I/-II photodynamic therapy

S Paul, P Kundu, P Kondaiah… - Inorganic Chemistry, 2021 - ACS Publications
A series of multichromophoric ruthenium (II) complexes with the formulation [Ru (tpy-
BODIPY)(tpy-R)] Cl2 (1–4), having a heteroleptic Ru (II)-bis-tpy (tpy= 4′-phenyl-2, 2′: 6 …

A biohybrid strategy for enabling photoredox catalysis with low-energy light

PT Cesana, BX Li, SG Shepard, SI Ting, SM Hart… - Chem, 2022 - cell.com
Natural systems drive the high-energy reactions of photosynthesis with efficient and
broadband energy capture. Transition-metal photocatalysts similarly convert light into …

The odyssey of cobaloximes for catalytic H 2 production and their recent revival with enzyme-inspired design

D Dolui, S Khandelwal, P Majumder… - Chemical …, 2020 - pubs.rsc.org
Cobaloxime complexes gained attention for their intrinsic ability of catalytic H2 production
despite their initial emergence as a vitamin B12 model. The simple, robust, and synthetically …

Enhancing the photophysical properties of Ru (II) complexes by specific design of tridentate ligands

MT Rupp, N Shevchenko, GS Hanan… - Coordination Chemistry …, 2021 - Elsevier
Artificial photosynthetic systems can collect and transform solar energy into chemical
energy. Inspired by natural photosynthesis, molecular artificial systems are commonly …

Recent progress on the design and development of diaminotriazine based molecular catalysts for light-driven hydrogen production

S Rajak, NN Vu, P Kaur, A Duong… - Coordination Chemistry …, 2022 - Elsevier
With the depletion of fossil fuels and an increase in global warming, developing clean and
sustainable energy resources is imperative. Among the different possible eco-friendly …

Bichromophoric ruthenium (II) bis-terpyridine-BODIPY based photosensitizers for cellular imaging and photodynamic therapy

S Paul, S Pathak, S Sahoo, RC Maji… - Dalton …, 2022 - pubs.rsc.org
Two multichromophoric homoleptic ruthenium (II) complexes [Ru (tpy-BODIPY) 2] Cl2
(complexes 1 and 2, tpy= 4-phenyl-2, 2: 6, 2-terpyridine, BODIPY= boron-dipyrromethene) …

Biotin–Pt (IV)–Ru (II)–Boron–Dipyrromethene Prodrug as “Platin Bullet” for Targeted Chemo-and Photodynamic Therapy

A Bera, A Nepalia, A Upadhyay, DK Saini… - Inorganic …, 2024 - ACS Publications
Using the principle of “Magic Bullet”, a cisplatin-derived platinum (IV) prodrug
heterobimetallic Pt (IV)–Ru (II) complex, cis, cis, trans-[Pt (NH3) 2Cl2 {Ru (tpy–BODIPY)(tpy …

Fundamental Characterization, Photophysics and Photocatalysis of a Base Metal Iron (II)‐Cobalt (III) Dyad

M Huber‐Gedert, M Nowakowski… - … A European Journal, 2021 - Wiley Online Library
A new base metal iron‐cobalt dyad has been obtained by connection between a
heteroleptic tetra‐NHC iron (II) photosensitizer combining a 2, 6‐bis [3‐(2, 6 …