Recent Advances in Porphyrin-Based COFs Boosting CO<sub>2</sub> Photocatalytic and Electrocatalytic Conversion. [PDF]
Yin J, Sang L, Wang Y.
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Bis-[<i>N</i>,<i>N</i>-bis-(di-phenyl-phosphan-yl)cyclo-hexa-namine-κ<sup>2</sup> <i>P</i>,<i>P</i>']di-chlorido-cobalt(III) tris-(μ-di-phenyl-phos-phinato-κ<sup>2</sup> <i>O</i>:<i>O</i>')bis-[chloridocobaltate(II)]-di-chloro-methane-diethyl ether (1/1.189/0.811). [PDF]
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Chiral Pd<sub>2</sub>L<sub>4</sub> Capsules from Readily Accessible Tröger's Base Ligands Inducing Circular Dichroism on Fullerenes C<sub>60</sub> and C<sub>70</sub>. [PDF]
Benchimol E +9 more
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Experimental study on the bending performance of a precast, pretensioned high-strength concrete I-girder with pretensioned double broken strands. [PDF]
Lu T, Zheng X, Chen J, Yang Y, Li Y.
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The π-trap approach for obtaining crystal structure data of inherently amorphous cluster compounds. [PDF]
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ZBTB7A is a modulator of KDM5-driven transcriptional networks in basal breast cancer. [PDF]
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Supramolecular complexation of C60 and C70 by helical nanographene incorporating N-heterotriangulene and hexabenzocoronene subunits. [PDF]
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Fullerenes C60 and C70 in flames
Nature, 1991The fullerenes C60 and C70 were first identified in carbon vapour produced by laser irradiation of graphite, and have recently been produced in macroscopic quantities by vaporization of graphite with resistive heating. It has also been suggested that fullerenes might be formed in sooting flames, and indeed all-carbon ions with mass/charge ratios ...
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Mendeleev Communications, 2009The reaction of C70 with higher C70(CF3)n or annealing of the latter followed by HPLC separation of reaction products resulted in an isolation of C70(CF3)2, C70(CF3)8 and C70(CF3)14. X-ray diffraction study revealed molecular structure of the three isomers that are compared with other known C70(CF3)n derivatives.
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