Self-assembly and thermodynamic synthesis of rotaxanedendrimers and related structures
文献信息
Ken Cham-Fai Leung, Kwun-Ngai Lau
The marriage between dendrimers and rotaxanes has been a topic of study. The use of noncovalent interactions to join dendritic fragments together to form rotaxane dendrimers could be more effective than traditional dendrimer synthesis using covalent bond formation reactions. Underpinning the fundamental study of rotaxane dendrimers would shed light on understanding and tuning the properties of mechanical bonds in a sterically hindered, dendritic environment. In this review article, we describe the classification and self-assembly of rotaxane dendrimers as well as the latest developments in thermodynamic synthesis of rotaxane dendrimers.
相关文献
Analysis of the interfacial characteristics of BiVO4/metal oxide heterostructures and its implication on their junction properties
Sebastián Murcia-López, Andreas Klein, Roel van de Krol, Teresa Andreu, Joan Ramón Morante, Thierry Toupance, Wolfram Jaegermann
DOI: 10.1039/C8CP07483F
Luminescence spectroscopy of oxazine dye cations isolated in vacuo
Christina Kjær, Steen Brøndsted Nielsen
DOI: 10.1039/C8CP07340F
Quantitative analysis of 14N quadrupolar coupling using 1H detected 14N solid-state NMR
James A. Jarvis, Maria Concistre, Richard W. Bounds, Ilya Kuprov, Marina Carravetta, Philip T. F. Williamson
DOI: 10.1039/C8CP06276E
Ab initio design of light absorption through silver atomic cluster decoration of TiO2
María Pilar de Lara-Castells, Carlos Cabrillo, David A. Micha, Alexander O. Mitrushchenkov, Tijo Vazhappilly
DOI: 10.1039/C8CP02853B
UPS and UV spectroscopies combined to position the energy levels of TiO2 anatase and rutile nanopowders
Clément Maheu, Luis Cardenas, Eric Puzenat, Pavel Afanasiev, Christophe Geantet
DOI: 10.1039/C8CP04614J
Deep core photoionization of iodine in CH3I and CF3I molecules: how deep down does the chemical shift reach?
Nacer Boudjemia, Kari Jänkälä, Kenji Tamasaku, Marko Huttula, Masaki Oura
DOI: 10.1039/C8CP07307D
Extending the scope of the carbonyl facilitated triplet excited state towards visible light excitation
Shinaj K. Rajagopal, Nagaraj K., Somadrita Deb, Vinayak Bhat, Devika Sasikumar, Ebin Sebastian, Mahesh Hariharan
DOI: 10.1039/C8CP01023D
A computational study on the electrified Pt(111) surface by the cluster model
DOI: 10.1039/C8CP07241H
Spectroscopic characterisation of centropolyindanes
Stewart F. Parker, Lisha Zhong, Marco Harig, Dietmar Kuck
DOI: 10.1039/C8CP07311B
您可能还喜欢
(3-氨苯基)环丙基甲酮(CAS号:162174-75-6)的主要用途是什么?
(3-氨苯基)环丙基甲酮主要用于合成化学中间体,特别是在药物化学领域作为原料。它还可以用于有机合成反应中,作为催化剂或反应物。
如何储存亚胺菌(CAS号:136470-79-6)?
亚胺菌应储存在干燥、阴凉处,避免直接暴露于光线下。建议使用密封容器储存,防止吸潮和污染。具体的储存条件应参考产品的安全数据表(MSDS)或药品说明书。
2-氯-2,2-二氟乙酰胺(CAS号:354-28-9)应用于哪些行业?
2-氯-2,2-二氟乙酰胺在医药、聚合物、传感器、半导体等领域有广泛应用。在医药领域,它作为中间体用于合成其他药物;在聚合物领域,用作聚合引发剂或稳定剂;在传感...
处理4-甲基-3-硝基-1,1-联苯(CAS号:53812-68-3)时应注意哪些实验室安全事项?
在处理4-甲基-3-硝基-1,1-联苯时,应佩戴手套、护目镜和实验室外套等个人防护装备(PPE),确保在通风橱中操作以减少吸入风险。若发生泄露,应立即使用沙子或...
(2S)-羟基(苯基)乙酸 (2R)-N-苄基-1-(4-甲氧基苯基)丙-2-胺盐(CAS号:188690-84-8)应用于哪些行业?
该化合物广泛应用于医药、聚合物和半导体行业。在医药领域,它是某些药物中间体的重要组成部分;在聚合物领域,可用作增塑剂;在半导体行业,可用于制造光刻胶。
在合成中是否有芬苯哒唑砜-D3标准品(CAS号:1228182-49-7)的替代品?
芬苯哒唑砜-D3标准品的替代品可能包括类似的苯并咪唑类化合物,如芬苯哒唑本身或其非同位素标记版本。这些替代品在结构上与芬苯哒唑砜-D3相似,但在具体应用中需进行...
2-氟-4-硝基苯乙酸(CAS号:315228-19-4)通常如何合成?
2-氟-4-硝基苯乙酸可以通过一系列化学反应合成,通常是从4-氟苯胺开始,首先进行硝化反应生成4-氟-2-硝基苯胺,然后进行乙酰化反应得到目标产物。具体的合成步...
2-氟-4-甲氧基苯乙酸(CAS号:883531-28-0)通常如何合成?
2-氟-4-甲氧基苯乙酸通常通过将4-甲氧基苯乙酸与氟化试剂(如氟化氰)反应来合成。反应通常在无水条件下进行,使用催化剂如六氟磷酸锂或四氟硼酸锂以提高选择性和产...
什么是4SC 202;4SC202(CAS号:1186222-89-8)?
4SC 202;4SC202是一种化学化合物,其化学名称为(2E)-N-(2-氨基苯基)-3-(1-{[4-(1-甲基-1H-吡唑-4-基)苯基]磺酰基}-1H...
来源期刊
Polymer Chemistry

Polymer Chemistry welcomes submissions in all areas of polymer science that have a strong focus on macromolecular chemistry. Manuscripts may cover a broad range of fields, yet no direct application focus is required.














