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The preparation and characterization of gold(0) nanoclusters stabilized by zeolite framework: Highly active, selective and reusable catalyst in aerobic oxidation of benzyl alcohol
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M. Zahmakiran And S. Oezkar, "The preparation and characterization of gold(0) nanoclusters stabilized by zeolite framework: Highly active, selective and reusable catalyst in aerobic oxidation of benzyl alcohol," MATERIALS CHEMISTRY AND PHYSICS , vol.121, pp.359-363, 2010

Zahmakiran, M. And Oezkar, S. 2010. The preparation and characterization of gold(0) nanoclusters stabilized by zeolite framework: Highly active, selective and reusable catalyst in aerobic oxidation of benzyl alcohol. MATERIALS CHEMISTRY AND PHYSICS , vol.121 , 359-363.

Zahmakiran, M., & Oezkar, S., (2010). The preparation and characterization of gold(0) nanoclusters stabilized by zeolite framework: Highly active, selective and reusable catalyst in aerobic oxidation of benzyl alcohol. MATERIALS CHEMISTRY AND PHYSICS , vol.121, 359-363.

Zahmakiran, Mehmet, And Saim Oezkar. "The preparation and characterization of gold(0) nanoclusters stabilized by zeolite framework: Highly active, selective and reusable catalyst in aerobic oxidation of benzyl alcohol," MATERIALS CHEMISTRY AND PHYSICS , vol.121, 359-363, 2010

Zahmakiran, Mehmet And Oezkar, Saim. "The preparation and characterization of gold(0) nanoclusters stabilized by zeolite framework: Highly active, selective and reusable catalyst in aerobic oxidation of benzyl alcohol." MATERIALS CHEMISTRY AND PHYSICS , vol.121, pp.359-363, 2010

Zahmakiran, M. And Oezkar, S. (2010) . "The preparation and characterization of gold(0) nanoclusters stabilized by zeolite framework: Highly active, selective and reusable catalyst in aerobic oxidation of benzyl alcohol." MATERIALS CHEMISTRY AND PHYSICS , vol.121, pp.359-363.

@article{article, author={Mehmet Zahmakıran And author={Saim Oezkar}, title={The preparation and characterization of gold(0) nanoclusters stabilized by zeolite framework: Highly active, selective and reusable catalyst in aerobic oxidation of benzyl alcohol}, journal={MATERIALS CHEMISTRY AND PHYSICS}, year=2010, pages={359-363} }