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New VIV-Based Metal–Organic Framework Having Framework Flexibility and High CO2 Adsorption Capacity

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Figshare2016-02-20 更新2026-04-29 收录
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https://figshare.com/articles/dataset/New_V_sup_IV_sup_Based_Metal_Organic_Framework_Having_Framework_Flexibility_and_High_CO_sub_2_sub_Adsorption_Capacity/2454937
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A vanadium based metal–organic framework (MOF), VO­(BPDC) (BPDC2– = biphenyl-4,4′-dicarboxylate), adopting an expanded MIL-47 structure type, has been synthesized via solvothermal and microwave methods. Its structural and gas/vapor sorption properties have been studied. This compound displays a distinct breathing effect toward certain adsorptives at workable temperatures. The sorption isotherms of CO2 and CH4 indicate a different sorption behavior at specific temperatures. In situ synchrotron X-ray powder diffraction measurements and molecular simulations have been utilized to characterize the structural transition. The experimental measurements clearly suggest the existence of both narrow pore and large pore forms. A free energy profile along the pore angle was computationally determined for the empty host framework. Apart from a regular large pore and a regular narrow pore form, an overstretched narrow pore form has also been found. Additionally, a variety of spectroscopic techniques combined with N2 adsorption/desorption isotherms measured at 77 K demonstrate that the existence of the mixed oxidation states VIII/VIV in the titled MOF structure compared to pure VIV increases the difficulty in triggering the flexibility of the framework.
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2016-02-20
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