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6篇 您的检索式:作者名="Erhan Hamaloglu"
    题名 作者 年代 出处 被引量
1Synchronous and metachronous occurrence of gastric adenocarcinoma and gastric lymphoma: A review of the literature显示文摘在一样的病人的主要胃的淋巴瘤和胃的腺癌的出现是一个稀罕实体。在治疗形式的恶意和变化的同步或异时的出现的可能的原因的因素用英语语言根据出版盒子被考察医药文学。Erhan Hamaloglu Serdar Topaloglu Arif Ozdemir Ahmet Ozenc 2006World Journal of Gastroenterology2006,12,22:7
2The effect of hepatectomy on coagulation: an evaluation by thromboelastography显示文摘Derya Karakoc Erhan Hamaloglu Arif Ozdemir Ahmet Dogrul Ahmet Ozenc 2010European Journal of Gastroenterology & Hepatology2010,,1:1
3Giant liver hemangioma: therapy by enucleation or liver resection 显示文摘Erhan Hamaloglu Hasan Ahun Arif Ozdemir 2005World J Surg2005,29,7:1
4Giant Liver Hemangioma: Therapy by Enucleation or Liver Resection显示文摘Erhan Hamaloglu M.D. Hasan Altun M.D. Arif Ozdemir M.D. Ahmet Ozenc M.D 2005World Journal of Surgery2005,,7:1
5Giant Liver Hemangioma: Therapy by Enucleation or Liver Resection显示文摘Erhan Hamaloglu M.D. Hasan Altun M.D. Arif Ozdemir M.D. Ahmet Ozenc M.D 2005World Journal of Surgery2005,,7:1
6Magnetic-porous microspheres with synergistic catalytic activity of small-sized gold nanoparticles and titania matrix显示文摘Fe3O4 nanoparticles immobilized on porous titania in micron-size range were decorated with smallsized gold nanoparticles and used as a plasmonic catalyst for the reduction of 4-nitrophenol. Monodisperse-porous magnetic titania microspheres were synthesized with bimodal pore-size distribution by the sol-gel templating method. Small-sized gold nanoparticles obtained by the Martin method were attached onto the aminated form of the magnetic titania microspheres. A significant enhancement in the catalytic activity was observed using the gold nanoparticle-decorated magnetic titania microspheres compared to gold nanoparticle-decorated magnetic silica microspheres because of the synergistic effect between small-sized gold nanoparticles and titania. The synergistic effect for gold nanoparticle-attached magnetic titania microspheres could be explained by surface plasmon resonance-induced transfer of hot electrons from gold nanoparticles to the conduction band of titania. Using the proposed catalyst, 4-nitrophenol could be converted to 4-aminophenol in an aqueous solution within 0.5 min. The 4-nitrophenol reduction rates were 2.5-79.3 times higher than those obtained with similar plasmonic catalysts. The selection of micron-size, magnetic, and porous titania microspheres as a support material for the immobilization of small-sized gold nanoparticles provided a recoverable plasmonic catalyst with high reduction ability.Kadriye Ozlem Hamaloglu Ebru Sag Cigdem Kip Erhan Senlik Berna Saracoglu Kaya Ali Tuncel 2019Frontiers of Chemical Science and Engineering2019,13,3:0
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