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Synthesis (Stuttgart), ISSN 0039-7881, 02/2016, Volume 48, Issue 8, pp. 1122 - 1130
We describe the hitherto unknown use of N-Boc-protected hydrazine in the Ugi tetrazole reaction to access a library of highly substituted... 
tert butyl 2 [1 (1 benzyl 1h tetrazol 5 yl) 3 methylbutyl]hydrazine 1 carboxylic acid | tert butyl 2 [2 methyl 1 (1 phenethyl 1h tetrazol 5 yl)propyl]hydrazine 1 carboxylic acid | unclassified drug | proton transport | Ugi reaction | Ugi tetrazole reaction | tert butyl 2[1 (1 tert butyl 1h tetrazol 5 yl) 3 phenylpropyl]hydrazine 1 carboxylic acid | hydrazine | drug isolation | electrospray mass spectrometry | isocyanides | benzyl 4 [2 (tert butoxycarbonyl)hydrazino] 4[1 [2 (1h indol 3 yl)ethyl] 1h tetrazol 5 yl]piperidine 1 carboxylic acid | deprotection reaction | tert butyl 2 [1 (1 benzyl 1h tetrazol 5 yl) 3 phenylpropyl]hydrazine 1 carboxylic acid | tert butyl 2 [1 (1 benzyl 1h tetrazol 5 yl) 2 phenylethyl]hydrazine 1 carboxylic acid | tert butyl 2 [2 [1 (1 methoxy 4 methyl 1 oxopentan 2 yl) 1h tetrazol 5 yl]propan 2 yl]hydrazine 1 carboxylic acid | mass spectrometry | tert butyl 2 [1 (1 benzyl 1h tetrazol 5 yl) 2 methylpropyl]hydrazine 1 carboxylic acid | tert butyl 2 [cyclohexyl(1 cyclohexyl 1h tetrazol 5 yl)methyl]hydrazine 1 carboxylic acid | proton nuclear magnetic resonance | hydrazine derivative | drug screening | chemical reaction | supercritical fluid chromatography | tert butyl 2 [1 (1 benzyl 1h tetrazol 5 yl)(cyclohexyl)methyl]hydrazine 1 carboxylic acid | tert butyl 2 [1 (1 phenethyl 1h tetrazol 5 yl)cyclohexyl]hydrazine 1 carboxylic acid | article | carbon nuclear magnetic resonance | To be checked by Faculty | tert butyl 2 [3 methyl 1 (1 phenethyl 1h tetrazol 5 yl)butyl]hydrazine 1 carboxylic acid | one pot synthesis | tetrazoles | tert butyl 2 [1 chloro 2 [1 (4 chlorobenzyl) 1h tetrazol 5 yl]propan 2 yl]hydrazine 1 carboxylic acid | tert butyl 2 [2 [1 (4 chlorobenzyl) 1h tetrazol 5 yl]butan 2 yl]hydrazine 1 carboxylic acid | tert butyl 2 [1 [1 benzyl 4 [1 (4 chlorobenzyl) 1h tetrazol 5 yl]piperidin 4 yl]]hydrazine 1 carboxylic acid | tert butyl 2 [cyclohexyl (1 phenethyl 1h tetrazol 5 yl)methyl]hydrazine 1 carboxylic acid | multicomponent reaction | tert butyl 2 [2 chloro 1 [1 (4 chlorobenzyl) 1h tetrazol 5 yl]ethyl]hydrazine 1 carboxylic acid | paper
Journal Article
Chemie ingenieur technik, ISSN 0009-286X, 05/2018, Volume 90, Issue 5, pp. 731 - 735
The oxidation of isobutane has been investigated for the first time in a micro reactor for a wide range of process conditions comparing the product ratios... 
tert‐Butyl peroxide | Micro reactor | tert‐Butyl hydroperoxide | Isobutane oxidation | Two‐phase flow | tert-Butyl peroxide | Two-phase flow | tert-Butyl hydroperoxide | Engineering | Engineering, Chemical | Technology | Science & Technology | Comparative analysis | Butane | Oxidation-reduction reaction
Journal Article
Separation and purification technology, ISSN 1383-5866, 06/2018, Volume 199, pp. 27 - 36
[Display omitted] •Matrimid®5218 is proposed, for the first time, for organic-organic separations by pervaporation.•Matrimid®5218 is capable to separate MeOH... 
Methanol (MeOH) | Methyl tert-butyl ether (MTBE) | Matrimid®5218 | Pervaporation | Engineering | Engineering, Chemical | Technology | Science & Technology | Methyl tertiary butyl ether | Analysis
Journal Article
Separation and purification technology, ISSN 1383-5866, 06/2013, Volume 110, pp. 63 - 73
·Polyamide-6 (PA-6) based mixed matrix membranes (MMMs) were successfully prepared.·Alumina, zirconia and titania oxides were used as fillers.·Removal of... 
Mixed matrix PA-6 based membranes | Organic–organic separation | Pervaporation | Methanol | Methyl-tert-butyl ether | Methanol Methyl-tert-butyl ether | Organic-organic separation | Engineering | Engineering, Chemical | Technology | Science & Technology | Polyamides
Journal Article
Separation and purification technology, ISSN 1383-5866, 05/2018, Volume 196, pp. 132 - 139
•tert-Butylation of phenol with TBA using acidic IL catalysts.•High phenol conversion (93%) obtained at 80°C and 3h.•Heteropoly anion-based and... 
2,6-di-tert-Butyl phenol | Ionic liquids | Phenol | tert-Butylation | 2,4-di-tert-Butylphenol | Alkylation | Engineering | Engineering, Chemical | Technology | Science & Technology | Catalysts | Phenols
Journal Article
Fluid phase equilibria, ISSN 0378-3812, 06/2016, Volume 417, pp. 242 - 247
The solid–liquid equilibrium (SLE) for ternary system of caprolactam + cyclohexanone oxime + methyl tert-butyl ether were determined at three temperatures of... 
Caprolactam | Methyl tert-butyl ether | Solid-liquid equilibrium | Cyclohexanone oxime | Phase diagram | Oximes | Phase diagrams | Cyclohexanone | Ternary systems | Crystallization | Phase equilibria | Ethers
Journal Article
Chemical engineering journal (Lausanne, Switzerland : 1996), ISSN 1385-8947, 01/2017, Volume 307, pp. 122 - 134
[Display omitted] •Model averaging provides the kinetic model taking into account model uncertainty.•ETBE is formed faster than TAEE in the simultaneous... 
Simultaneous etherification | tert-Amyl ethyl ether | Amberlyst™ 35 | Ethyl tert-butyl ether | Kinetic modeling | Model averaging
Journal Article
Applied microbiology and biotechnology, ISSN 0175-7598, 12/2013, Volume 97, Issue 24, pp. 10531 - 10539
Journal Article
Applied catalysis. A, General, ISSN 0926-860X, 2017, Volume 541, pp. 141 - 150
Journal Article
Industrial & engineering chemistry research, ISSN 0888-5885, 02/2014, Volume 53, Issue 6, pp. 2340 - 2347
The minimum vapor flow method and V min diagram are applied to the design of a reactive dividing wall column (RDWC) in this work. A shortcut design method for... 
Engineering | Engineering, Chemical | Technology | Science & Technology | Industrial engineering | Design engineering | Dividing wall columns | Dimethyl ether | Ethers | Mathematical analysis
Journal Article