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Prediction of CO2 adsorption properties of azo, azoxy and azodioxy-linked porous organic polymers guided by electrostatic potential
Prediction of CO2 adsorption properties of azo, azoxy and azodioxy-linked porous organic polymers guided by electrostatic potential† Tea Frey,a Barbara Panić,a Petar Šutalo,a Mladen Borovina, a Ivana Biljan *a and Ivan Kodrin *a Abstract The design of functional materials capable of sequestering CO2 from the atmosphere or capturing that emitted from human activities is one of the major challenges in materials science today.
Synthesis and Characterization of Benzene- and Triazine-Based Azo-Bridged Porous Organic Polymers
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Modulating Electronic Properties of Dinitrosoarene Polymers
Modulating Electronic Properties of Dinitrosoarene Polymers Using the dinitrosobenzene polymer (1) as a model, we explore how the electronic, transport, and optical properties of a conjugated organic semiconductor can be modulated. Combining computational and experimental tools, we explore the effects of solid-state packing, backbone torsion, surface adsorption, the conjugation in the aromatic core, and substituents.
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