Tris- and tetrakis-β-trifluoromethylated gallium (3CF-Ga, 4CF-Ga) and aluminum (3CF-Al, 4CF-Al) corrole systems were synthesized by a facile "one-pot" approach from the respective tri- and tetra-iodo starting compounds using the FSOCFCOMe reagent. The isolated 5,10,15-(tris-pentafluorophenyl)corrole-based compounds set the groundwork for another important β-substituent study in inorganic photocatalysis. As seen previously, -CF group substitution leads to red shifts in both the absorption and emission spectra compared to their unsubstituted counterparts (X. Zhan, et al., Inorg. Chem., 2019, 58, 6184-6198). All CF-substituted corrole complexes showed strong fluorescence; 3CF-Al possessed the highest fluorescence quantum yield (0.71) among these compounds. The photocatalytic production of bromophenol by way of these photosensitizing complexes was studied demonstrating that tris-trifluoromethylation is an important substitution class, especially when Ga is present (experimental TON value in parentheses): 3CF-Ga (192) > 4CF-Ga (146) > 3CF-Al (130) > 4CF-Al (56) > 1-Ga (43) > 1-Al (18). The catalytic performance (turn-over number, TON) for benzylbromide formation (from toluene) was found to be: 3CF-Ga (225) > 1-Ga (138) > 3CF-Al (130) > 4CF-Ga (126) > 1-Al (95) > 4CF-Al (89); in these trials, benzaldehyde was also detected as a product in which 3CF-Ga outperforms the other compounds (TON = 109). The tetra-CF-substituted 4CF-Ga and 4CF-Al species exhibit a dramatic formal positive shift of 116 mV and 126 mV per [CF] group, respectively, compared to the unsubstituted parent species 1-Ga and 1-Al. However, the absorbance values (λ = 400 nm) of these corrole complexes (all equally concentrated: 4.0 × 10 M) were 3CF-Al (0.23) > 3CF-Ga (0.22) > 1-Al (0.21) > 1-Ga (0.20) > 4CF-Al (0.19) > 4CF-Ga (0.15), which helps rationalize why 3CF-Ga performs the best among these catalysts. These new photosensitizers were carefully characterized by H and F NMR spectroscopy to help verify the number and position (symmetry) of the CF groups; 3CF-Ga and 3I-Al were structurally characterized. Distortions in the corrole macrocycle imposed by the multiple β-substitution were quantified.
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Waste Manag
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Guangdong Provincial Key Lab of Agro-animal Genomics and Molecular Breeding, College of Animal Science, South China Agricultural University, Guangzhou 510642, China; Guangxi Key Laboratory of Sericulture Ecology and Applied Intelligent Technology/ Guangxi Collaborative Innovation Center of Modern Sericulture and Silk, Hechi University, Hechi 546300, China. Electronic address:
Sericulture waste poses significant challenges to industrial and environmental safety. Black soldier fly larvae (BSFL) offer a promising solution for organic waste management by converting it into insect protein. This study aimed to develop a microbial fermented method for utilizing sericulture waste to feed BSFL and explore the underlying mechanisms.
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Melbourne School of Psychological Sciences, University of Melbourne.
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Department of Microbiology and Molecular Genetics, University of California, Davis, California, USA.
Orthoflaviviruses are positive-sense single-stranded RNA viruses that hijack host proteins to promote their own replication. Zika virus (ZIKV) is infamous among orthoflaviviruses for its association with severe congenital birth defects, notably microcephaly. We previously mapped ZIKV-host protein interactions and identified the interaction between ZIKV non-structural protein 4A (NS4A) and host microcephaly protein ankyrin repeat and LEM domain-containing 2 (ANKLE2).
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Federal State Budgetary Scientific Institution, Research Center for Medical Genetics, Moscow, Russia.
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