1173398-69-0Relevant academic research and scientific papers
Ferrocene analogues of hydrogen-bond-donor catalysts: An investigative study on asymmetric Michael addition of 1,3-dicarbonyl compounds to nitroalkenes
Rao, Kadiyala Srinivasa,Trivedi, Rajiv,Kantam, M. Lakshmi
, p. 221 - 227 (2015)
This report describes the synthesis of eight ferrocene derivatives of squaramide- or thiourea- based bifunctional catalysts containing cinchona alkaloid moieties. A stepwise sequential route was used to assemble the various components of these ferrocene d
Based on the double function of ferrocene hydrogen bond organic catalyst and its preparation method and application
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Paragraph 0080; 0083, (2017/10/06)
The invention discloses a double functional hydrogen bond organic catalyst based on ferrocene as well as a preparation method and an application of the double functional hydrogen bond organic catalyst. A structural formula of the catalyst is shown in the
A dramatic synergistic effect of a flexible achiral linker on a rigid chiral cis-1,2-diamine bifunctional organocatalyst
Matsunaga, Hirofumi,Tajima, Daisuke,Kawauchi, Tetsuro,Yasuyama, Takuro,Ando, Shin,Ishizuka, Tadao
supporting information, p. 2892 - 2896 (2017/04/10)
The combination of a “rigid” chiral bicyclic cis-1,2-diamine skeleton with steric bulkiness and a “flexible” achiral linker was newly designed as a bifunctional organocatalyst framework and it showed excellent catalytic activity of up to 0.05 mol%, accomp
1,3-Diamine-Derived Bifunctional Organocatalyst Prepared from Camphor
Ri?ko, Sebastijan,Svete, Jurij,?tefane, Bogdan,Perdih, Andrej,Golobi?, Amalija,Meden, An?e,Gro?elj, Uro?
supporting information, p. 3786 - 3796 (2016/12/16)
Chiral 1,2-diamines are privileged structural motifs in organocatalysis, whereas efficient 1,3-diamine-derived organocatalysts are very rare. Herein we report a highly efficient camphor-1,3-diamine-derived squaramide organocatalyst. Its catalytic activity
Yolk-shell-structured mesoporous silica: A bifunctional catalyst for nitroaldol-Michael one-pot cascade reaction
An, Juzeng,Cheng, Tanyu,Xiong, Xi,Wu, Liang,Han, Bin,Liu, Guohua
, p. 5714 - 5720 (2016/07/21)
Great interest in heterogeneous asymmetric catalysis has focused on obtaining an enantioselective cascade reaction through a controllable active site-isolated heterogeneous catalyst. Herein, we utilize a yolk-shell-structured mesoporous silica and assemble an active site-isolated bifunctional heterogeneous catalyst, where chiral cinchonine-based squaramide molecules are anchored within a silicate channel as an outer shell while amine-functionalities are entrapped onto a silicate yolk as an inner core. Structural analyses and characterizations of the heterogeneous catalyst reveal its well-defined single-site chiral active species within its silicate network. Electron microscopy confirms the yolk-shell-structured mesoporous material. As presented in this study, as a bifunctional heterogeneous catalyst, it enables an efficiently nitroaldol-Michael cascade reaction to conduct the three-component coupling of nitromethane, aldehyde and acetylacetone into various chiral diones with high yields and up to 99% enantioselectivities in a one-pot process. As expected, this active site-isolated catalyst not only enhances the catalytic selectivity of the first-step nitroaldol condensation, but also keeps the enantioselectivity of the second-step Michael addition. Moreover, the heterogeneous catalyst can be also recovered easily and recycled repeatedly, making it an interesting feature in a three-component organic transformation.
Amphiphilic Hyperbranched Polyethoxysiloxane: A Self-Templating Assembled Platform to Fabricate Functionalized Mesostructured Silicas for Aqueous Enantioselective Reactions
Zhang, Kun,An, Juzeng,Su, Yanchao,Zhang, Jueyu,Wang, Ziyun,Cheng, Tanyu,Liu, Guohua
, p. 6229 - 6235 (2016/09/09)
Fabrication of amphiphilic mesostructured silica as a heterogeneous catalyst is beneficial to facilitate an aqueous reaction due to its highly dispersed nature in water. In this work, by taking advantage of a self-templating assembled strategy, we constru
Novel ferrocene-based bifunctional amine-thioureas for asymmetric Michael addition of acetylacetone to nitroolefins
Ren, Xiaochen,He, Chunyan,Feng, Yingle,Chai, Yonghai,Yao, Wei,Chen, Weiping,Zhang, Shengyong
, p. 5054 - 5060 (2015/05/05)
An efficient method was developed to synthesize ferrocene-based bifunctional amine-thioureas bearing multiple hydrogen-bonding donors. Asymmetric Michael addition of acetylacetone to nitroolefins catalyzed by these novel bifunctional catalysts affords the Michael adducts in high yield and moderate to excellent enantioselectivities. Multiple hydrogen-bonds play an important role in accelerating the reaction.
Cinchona-diaminomethylenemalononitrile organocatalyst for asymmetric conjugate addition of 1,3-diketone to nitroalkene
Hirashima, Shin-Ichi,Nakashima, Kosuke,Fujino, Yuki,Arai, Ryoga,Sakai, Takaaki,Kawada, Masahiro,Koseki, Yuji,Murahashi, Miho,Tada, Norihiro,Itoh, Akichika,Miura, Tsuyoshi
, p. 4619 - 4622 (2014/12/11)
A diaminomethylenemalononitrile organocatalyst with a cinchona motif efficiently promotes the enantioselective conjugate addition of acetylacetone to various nitroalkenes to yield the corresponding addition products in high to excellent yields with up to 89% ee.
Fast, solvent-free and hydrogen-bonding-mediated asymmetric Michael addition in a ball mill
Wang, Yi-Feng,Chen, Ru-Xiang,Wang, Ke,Zhang, Bin-Bin,Li, Zhao-Bo,Xu, Dan-Qian
supporting information; experimental part, p. 893 - 895 (2012/06/01)
The chiral squaramide derivatives as hydrogen bonding catalyst for the Michael addition reactions of 1,3-dicarbonyl compounds to nitroolefins under solvent-free conditions was developed using a planetary ball mill. High yields, high enantioselectivities a
Modular bifunctional chiral thioureas as versatile organocatalysts for highly enantioselective aza-Henry reaction and michael addition
Li, Hua,Zhang, Xu,Shi, Xin,Ji, Nan,He, Wei,Zhang, Shengyong,Zhang, Bangle
, p. 2264 - 2274 (2012/11/06)
A series of new modular bifunctional chiral thiourea organocatalysts were synthesized from natural Cinchona alkaloids and amino acids, and their performance in the aza-Henry reaction of nitroalkanes to imines, the Michael addition of acetylacetone to nitroolefins and the Michael addition of acetone to nitroolefins was investigated. Under the mild conditions, the important building blocks β-nitro amines and γ-nitro carbonyl compounds could be obtained in good yields (up to 95%) with excellent enantioselectivities (up to 99% ee) and diastereoselectivity (up to 17:1). Copyright
