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Copper(I)-Zeolites as New Heterogeneous and Green Catalysts for Organic Synthesis,
Synthesis 2010, No.9, pp. 1557–1567.
[10] T.W. Graham Solomons và Craig B. Fryhle, Organic chemistry, 10th edition, pp.
894-895.
[11] Benjamin List, Peter Pojarliev, William T. Biller, and Harry J. Martin (2002), The
Proline-Catalyzed Direct Asymmetric Three-Component Mannich Reaction: Scope,
Optimization, and Application to the Highly Enantioselective Synthesis of 1,2-Amino
Alcohols, Journal of the American Chemical Society, Vol. 124, pp. 827-833.
[12] Yujiro Hayashi, Wataru Tsuboi, Itaru Ashimine, Tatsuya Urushima, Mitsuru
Shoji, and Ken Sakai (2003), The Directand Enantioselective, OnePot,ThreeComponent, Cross-Mannich Reaction of Aldehydes, Angewandte Chemie
International Edition, vol. 43, pp. 3677-3680.
[13] Ismail Ibrahem, Weibiao Zou, Magnus Engqvist, Yongmei Xu, and Armando
C0rdova (2005), Acyclic Chiral Amines and Amino Acids as Inexpensive and Readily
Tunable Catalysts for the Direct Asymmetric Three-Component Mannich Reaction,
Chemistry – A European Journal , vol. 11, pp. 7024–7029.
[14] Qunsheng Guo, John Cong-Gui Zhao, Hadi Arman (2012), Base-catalysted threecomponent direct Mannich reaction of enolize ketones with high syn-selectives,
Tetrahedron Letters, vol. 53, pp. 4866-4869.
[15] Raimondo Maggi, Alessandra Bello, Chiara Oro, Giovanni Sartori, Laura Soldi
(2008), AgY zeolite as catalyst for the effective three-component synthesis of
propargylamines, Tetrahedron, vol. 64, pp. 1435-1439.
[16] Andrea Olmos, Aurélien Alix, Jean Sommer and Patrick Pale (2009), ScIII-Doped
Zeolites as New Heterogeneous Catalysts: Mukaiyama Aldol Reaction, Chemistry – A
European Journal, vol. 15, pp. 11229-11234.
[17] Deepak.M. Nagrik, D.M.Ambhore, Manoj.B. Gawande (2010), One-pot
Preparation of β–amino Carbonyl Compounds by Mannich Reaction Using
MgO/ZrO2 as Effective and Reusable Catalyst, International Journal of Chemistry,
vol. 2, pp. 98-101.

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[18] H. Sharghia, R. Khalifeha, F. Moeini, M.H. Beyzavi, A. Salimi Beni and M.M.
Doroodmand (2011), Mannich Reaction of Secondary Amines, Aldehydes and Alkynes
in Water Using Cu/C Nanoparticles as a Heterogeneous Catalyst, Journal of the
Iranian Chemical Society, vol.8, pp. S89-S103.
[19] Pullar Vadivel, Cinnathambi Subramani Maheswari, Appaswami Lalitha (2013),
Synthesis of β-Amino Carbonyl Compounds via Mannich reaction using sulfated
MCM-41, International Journal of Innovative Technology and Exploring Engineering,
vol.2, pp. 267-270.
[20] Ahmad Reza Massah, Roozbeh Javad Kalbasi and Neda Samah (2011), Highly
Selective Synthesis of β-Amino Carbonyl Compounds over ZSM-5-SO3H under
Solvent-free Conditions, Bulletin of the Korean Chemical Society, vol. 32, pp. 17031708.
[21] Vijikumar S. Marakatti, Anand B. Halgeri and Gana V. Shanbhag (2014), Metal
ion-exchanged zeolites as solid acid catalysts for green synthesis of Nopol from Prins
reaction, Catalysis Science & Technology, vol. 4, pp. 4065-4074.
[22] Muthusamy Poomalai Pachamuthu, Kannan Shanthi, Rafael Luque and Anand
Ramanathan (2013), SnTUD-1: a solid acid catalyst for three component coupling
reactions at room temperature, Green Chem., vol.15, pp. 2158-2166.

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PHỤ LỤC

Phụ lục 1: Kết quả diện tích bề mặt riêng của xúc tác Zn-ZSM

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O

HN

Phụ lục 2: Phổ hồng ngoại của 1,3-diphenyl-3-(phenylamino)propan-1-one

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O

HN

Phụ lục 3: Phổ 1H-NMR của 1,3-diphenyl-3-(phenylamino)propan-1-one

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O HN

Cl

Phụ lục 4: Phổ 1H-NMR của 3-(4-chlorophenyl)-1-phenyl-3(phenylamino)propan-1-one

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NHẬN XÉT CỦA HỘI ĐỒNG
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Tp.Hồ Chí Minh, ngày 22 tháng 5 năm 2016

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TS. Bùi Xuân Hào

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