BAY-069是目前体外活性最强的支链氨基酸转氨酶1(BCAT1)抑制剂,但其报道的合成路线存在原料成本较高、总收率极低和中间体结构表征不充分等缺点。本研究基于已有合成路线,重点对其合成工艺中的Ullmann偶联反应进行了系统优化。以1-硝基...BAY-069是目前体外活性最强的支链氨基酸转氨酶1(BCAT1)抑制剂,但其报道的合成路线存在原料成本较高、总收率极低和中间体结构表征不充分等缺点。本研究基于已有合成路线,重点对其合成工艺中的Ullmann偶联反应进行了系统优化。以1-硝基萘(1)为起始原料,经过7步反应和手性色谱柱手性拆分合成目标化合物BAY-069。所有中间体和目标化合物均经1 H NMR,13 C NMR和HR-MS表征。以Ullmann偶联反应为主要优化步骤的路线,其优化后的总收率为11.0%(3b→(±)-BAY-069),是原总收率1.6%(3a→(±)-BAY-069)的6.9倍。展开更多
Acetylene purification from methane is challenging in the field of porous organic polymers(POPs).Herein,we have provided one-pot Ullmann coupling reaction to synthesize a series of POPs with rich N-sites,named FJU-POP...Acetylene purification from methane is challenging in the field of porous organic polymers(POPs).Herein,we have provided one-pot Ullmann coupling reaction to synthesize a series of POPs with rich N-sites,named FJU-POP-n,wherein the low-cost and non-toxic Cu(acac)2 and environmental-friendly glycerol are employed as catalyst and solvent,respectively.展开更多
The Ni@Au core-shell nanoparticles had been successfully synthesized from aqueous solution by one-step route at room temperature. The Ni@Au nanoparticles can be an excellent catalyst for Ullmann reaction. The advantag...The Ni@Au core-shell nanoparticles had been successfully synthesized from aqueous solution by one-step route at room temperature. The Ni@Au nanoparticles can be an excellent catalyst for Ullmann reaction. The advantage of Ni@Au is that the catalyst does not need additional reducing agents. The Au shell can effectively protect the Ni core from oxidation. The Ni core and Au shell have both composited in structure and cooperated in function.展开更多
文摘BAY-069是目前体外活性最强的支链氨基酸转氨酶1(BCAT1)抑制剂,但其报道的合成路线存在原料成本较高、总收率极低和中间体结构表征不充分等缺点。本研究基于已有合成路线,重点对其合成工艺中的Ullmann偶联反应进行了系统优化。以1-硝基萘(1)为起始原料,经过7步反应和手性色谱柱手性拆分合成目标化合物BAY-069。所有中间体和目标化合物均经1 H NMR,13 C NMR和HR-MS表征。以Ullmann偶联反应为主要优化步骤的路线,其优化后的总收率为11.0%(3b→(±)-BAY-069),是原总收率1.6%(3a→(±)-BAY-069)的6.9倍。
基金This work was financially supported by the National Natural Science Foundation of China(grant nos.21975044,21971038 and 219722810)Fujian Provincial Department of Science and Technology(2018J07001,2019L3004,2019H6012 and 2021H0062).
文摘Acetylene purification from methane is challenging in the field of porous organic polymers(POPs).Herein,we have provided one-pot Ullmann coupling reaction to synthesize a series of POPs with rich N-sites,named FJU-POP-n,wherein the low-cost and non-toxic Cu(acac)2 and environmental-friendly glycerol are employed as catalyst and solvent,respectively.
基金Supported by the Natural Science Foundation of Jiangsu Province (BK2009678)
文摘The Ni@Au core-shell nanoparticles had been successfully synthesized from aqueous solution by one-step route at room temperature. The Ni@Au nanoparticles can be an excellent catalyst for Ullmann reaction. The advantage of Ni@Au is that the catalyst does not need additional reducing agents. The Au shell can effectively protect the Ni core from oxidation. The Ni core and Au shell have both composited in structure and cooperated in function.