In bladder cancer, LRG1 binds to ANXA2 to trigger mitochondrial ROS‐dependent NETosis. This pathogenic cascade actively uncouples endothelial‐mural cell interactions, driving profound vascular destabilization. Consequently, targeting the LRG1‐ANXA2 axis attenuates the neutrophil burden and induces structural vascular normalization, offering a powerful ...
Dongshan Chen +8 more
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Effects of Increased Ligand Fields of the Second- and Third-Row Transition Metals on the Preferred Structures of Sandwich Compounds of Stoichiometry C<sub>12</sub>H<sub>12</sub>M. [PDF]
Liu Y +7 more
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Highly Dispersed Rhodium on MXenes via Microwave Solvothermal Strategy for High-Performance Hydrogen Evolution Catalysis. [PDF]
Zverev AS +9 more
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Rhodium-Catalyzed Reductive Carbonylative Cyclization of Aryl Alkynes with Hydrosilanes via C-H Activation to Access Silyl-Substituted Indanones. [PDF]
Zhu F, Zhou M, Wu XF.
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Catalytic Methods for the Transfer of Nonstabilized Carbenes. [PDF]
Arnold ES +2 more
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Cyclometalated Rhodium(III) Polypyridyl Complexes with Anti-Cancer Stem Cell Activity. [PDF]
Ren H, Singh K, Suntharalingam K.
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Recent Advances in Transition-Metal-Catalyzed Selective Synthesis of π‑Conjugated Silacycles: A Mini-Review. [PDF]
Ali SSJ, Das RS, Kumar S, Guha NR.
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Degradation of polycrystalline rhodium and rhodium nanoparticles
Electrochimica Acta, 2012Abstract The electrochemical stability of polycrystalline rhodium and rhodium nanoparticles is quantitatively investigated in non-complexing sulfate electrolyte under potential cycling conditions. In situ measurements of the active surface area are complemented by discrete elemental analysis of the electrolyte solution.
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Abstract RHODIUM is one of six metals comprising the platinum group elements. Relative to platinum, RHODIUM is about 58% as dense. It is harder, much less workable and more resistant to corrosion than platinum. This datasheet provides information on composition, physical properties, hardness, elasticity, and tensile properties.
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