Stephen A. Fordham

Affiliations: 
Chemistry Texas A & M University, College Station, TX, United States 
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"Stephen Fordham"
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Zou L, Feng D, Liu TF, et al. (2016) A versatile synthetic route for the preparation of titanium metal-organic frameworks. Chemical Science. 7: 1063-1069
Chen YP, Liu TF, Fordham S, et al. (2015) Crystal engineering on superpolyhedral building blocks in metal-organic frameworks applied in gas adsorption. Acta Crystallographica Section B, Structural Science, Crystal Engineering and Materials. 71: 613-8
Ferrando-Soria J, Fabelo O, Castellano M, et al. (2015) Multielectron oxidation in a ferromagnetically coupled dinickel(ii) triple mesocate. Chemical Communications (Cambridge, England). 51: 13381-4
Zou L, Feng D, Liu TF, et al. (2015) Facile one-pot synthesis of porphyrin based porous polymer networks (PPNs) as biomimetic catalysts. Chemical Communications (Cambridge, England). 51: 4005-8
Feng D, Wang K, Wei Z, et al. (2015) Corrigendum: Kinetically tuned dimensional augmentation as a versatile synthetic route towards robust metal-organic frameworks. Nature Communications. 6: 6106
Liu TF, Feng D, Chen YP, et al. (2015) Topology-guided design and syntheses of highly stable mesoporous porphyrinic zirconium metal-organic frameworks with high surface area. Journal of the American Chemical Society. 137: 413-9
Feng D, Wang K, Wei Z, et al. (2014) Kinetically tuned dimensional augmentation as a versatile synthetic route towards robust metal-organic frameworks. Nature Communications. 5: 5723
Liu TF, Zou L, Feng D, et al. (2014) Stepwise synthesis of robust metal-organic frameworks via postsynthetic metathesis and oxidation of metal nodes in a single-crystal to single-crystal transformation. Journal of the American Chemical Society. 136: 7813-6
Lu W, Wei Z, Yuan D, et al. (2014) Rational design and synthesis of porous polymer networks: Toward high surface area Chemistry of Materials. 26: 4589-4597
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