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Biomedical Applications of Inorganic Photochemistry, Volume 80 in
the Advances in Inorganic Chemistry series, highlights new advances
in the field, with this new volume presenting interesting chapters
written by an international board of authors. Chapters in this new
release include Photochemical bio-signaling with Ruthenium
complexes, Adventures in the photo-uncaging of small molecule
bioregulators, Challenges in medicinal inorganic chemistry and best
practices to ensure rigor and reproducibility, Strategic Design of
Photo-functional Transition Metal Complexes for Targeted Bioimaging
and Therapy, Photoactive Manganese carbonyl Complexes with
fac-{Mn(CO)3} Moiety: Design, Application, and Potential as
Prodrugs in CO Therapy, Mitochondrial Targeting Metal Complexes,
and more. Other chapters cover Photoactive Organometallic Compounds
with Antimicrobial Properties, Photoactivated platinum anticancer
complexes, New ruthenium phthalocyanines liposomal-encapsulated in
modulation of nitric oxide and singlet oxygen release: Selectivity
cytotoxicity effect on cancerous cell lines, Inorganic
Nanoparticles Engineered for Light-Triggered Unconventional
Therapies, Mechanistic insight into phot-activation of small
inorganic molecules from the biomedical application perspectives,
Ruthenium Complexes for Photoactivated Dual Activity: Drug Delivery
and Singlet Oxygen Generation, and Leveraging the Photophysical
Properties of Rhenium(I) Tricarbonyl Complexes for Biomedical
Applications.
Catalysis in Biomass Conversion, Volume 77 in the Advances in
Inorganic Chemistry series, presents timely and informative
summaries on current progress in a variety of subject areas. This
acclaimed serial features reviews written by experts in the field,
serving as an indispensable reference to advanced researchers that
empowers readers to pursue new developments in each field. Users
will find this to be a comprehensive overview of recent findings
and trends from the last decade that covers various kinds of
inorganic topics, from theoretical oriented supramolecular
chemistry, to the quest for accurate calculations of spin states in
transition metals.
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