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Volumn 283, Issue 5405, 1999, Pages 1148-1150

A chemically functionalizable nanoporous material [Cu3(TMA)2 (H2O)3](n)

Author keywords

[No Author keywords available]

Indexed keywords

NANOPARTICLE; POLYMER; ZEOLITE;

EID: 0033582733     PISSN: 00368075     EISSN: None     Source Type: Journal    
DOI: 10.1126/science.283.5405.1148     Document Type: Article
Times cited : (5463)

References (44)
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    • -3, conventional discrepancy index R = 5.99, and weighted wR2 = 16.78; for 43 least-squares parameters and 853 reflections, diffraction angle 2Θmax = 50°. The structure was refined with SHELXL. A full description of the x-ray analysis is available at www. sciencemag.org/feature/data/986116.shl. The coordinates are on deposit with the Cambridge Structural Database, deposit number 112954.
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    • Lattice expansion occurred in a family of Cu polymers containing N,N′ donor bridges [S. Katawa et al., Inorg. Chem. 35, 4449 (1996); S. Kitagawa, paper presented at the 1st International Conference on Inorganic Materials, Versailles, 16 to 19 September 1998].
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    • Lattice expansion occurred in a family of Cu polymers containing N,N′ donor bridges [S. Katawa et al., Inorg. Chem. 35, 4449 (1996); S. Kitagawa, paper presented at the 1st International Conference on Inorganic Materials, Versailles, 16 to 19 September 1998].
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    • 2 and others). Further heating to 800°C resulted in a mixture of CuO and glassy C as final products. TGA curves are available at www. sciencemag.org/feature/data/986116.shl.
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    • 2 loss). Variable-temperature single-crystal studies of the DMSO derivative showed no bound DMSO at RT; heating up to 200°C produced intensity changes due to solvent loss (reflection 222 increases in intensity and reflection 400 decreases). Cooling to RT resulted in a general reversal of these trends.
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    • 2 produced Δw = <-1% from 25° to 500°C and Δw = -45.7% from 500° to 650°C, corresponding to decarboxylation.
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    • We are grateful to the Research Grants Council of Hong Kong (RGC grants 6148-97P and 6061-98P) and the Advanced Materials Research Institute (AMRI-HKUST) for financial support and to J. Zheng and A. Siu for technical assistance.


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