Influence of the milling parameters on the nucleophilic substitution reaction of activated β-cyclodextrins
暂无分享,去创建一个
[1] O. Adeoye,et al. Cyclodextrin nanosystems in oral drug delivery: A mini review. , 2017, International journal of pharmaceutics.
[2] E. Calcio Gaudino,et al. Synthesis of Randomly Substituted Anionic Cyclodextrins in Ball Milling , 2017, Molecules.
[3] Carsten Bolm,et al. Altering Product Selectivity by Mechanochemistry. , 2017, The Journal of organic chemistry.
[4] Tomislav Friščić,et al. Mechanochemistry: A Force of Synthesis , 2016, ACS central science.
[5] Y. Takashima,et al. 1.12 – Cyclodextrin , 2017 .
[6] E. Calcio Gaudino,et al. Efficient mechanochemical synthesis of regioselective persubstituted cyclodextrins , 2016, Beilstein journal of organic chemistry.
[7] J. Valverde,et al. Influence of ball milling on CaO crystal growth during limestone and dolomite calcination: Effect on CO2 capture at Calcium Looping conditions , 2016 .
[8] Davin Tan,et al. Towards medicinal mechanochemistry: evolution of milling from pharmaceutical solid form screening to the synthesis of active pharmaceutical ingredients (APIs). , 2016, Chemical communications.
[9] Jinhua Chen,et al. Recent advances for cyclodextrin-based materials in electrochemical sensing , 2016 .
[10] Jean Martínez,et al. Poly(ethylene) glycols and mechanochemistry for the preparation of bioactive 3,5-disubstituted hydantoins , 2016 .
[11] T. Hanusa,et al. Advances in organometallic synthesis with mechanochemical methods. , 2016, Dalton transactions.
[12] G. Cravotto,et al. Nucleophilic Substitutions of 6I-O-Monotosyl-β-cyclodextrin in a Planetary Ball Mill , 2016 .
[13] S. Menuel,et al. Selective Secondary Face Modification of Cyclodextrins by Mechanosynthesis. , 2015, The Journal of organic chemistry.
[14] G. Cravotto,et al. Efficient mechanochemical complexation of various steroid compounds with α-, β- and γ-cyclodextrin , 2015, Steroids.
[15] Katharina Jacob,et al. Scale-up of organic reactions in ball mills: process intensification with regard to energy efficiency and economy of scale. , 2014, Faraday discussions.
[16] Jean Martínez,et al. Mechanochemical preparation of hydantoins from amino esters: application to the synthesis of the antiepileptic drug phenytoin. , 2014, The Journal of organic chemistry.
[17] Aruna Earla,et al. Covalently linked plasticizers: triazole analogues of phthalate plasticizers prepared by mild copper-free “click” reactions with azide-functionalized PVC. , 2014, Macromolecular rapid communications.
[18] B. Ranu,et al. Ball Milling Towards Green Synthesis: Applications, Projects, Challenges , 2014 .
[19] Guan-Wu Wang,et al. Mechanochemical organic synthesis. , 2013, Chemical Society reviews.
[20] G. Cravotto,et al. Recent Applications of Cyclodextrins as Food Additives and in Food Processing , 2013 .
[21] James Mack,et al. Mechanochemistry: opportunities for new and cleaner synthesis. , 2012, Chemical Society reviews.
[22] M. Czugler,et al. Sodium halide complexes of ribose derivatives and their unusual crystal structures. , 2011, Carbohydrate research.
[23] J. M. Benito,et al. Copper(II)-complex directed regioselective mono-p-toluenesulfonylation of cyclomaltoheptaose at a primary hydroxyl group position: an NMR and molecular dynamics-aided design. , 2011, The journal of physical chemistry. B.
[24] Bernd Ondruschka,et al. Ball milling in organic synthesis: solutions and challenges. , 2011, Chemical Society reviews.
[25] X. Guan,et al. Stochastic nanopore sensors for the detection of terrorist agents: current status and challenges. , 2010, Analytica chimica acta.
[26] L. Jicsinszky,et al. Catalytic transfer hydrogenation of sugar derivatives , 2001 .