A new application about C20H27NO

Electric Literature of 100442-33-9, Each elementary reaction can be described in terms of its molecularity, the number of molecules that collide in that step. The slowest step in a reaction mechanism is the rate-determining step.you can also check out more blogs about 100442-33-9.

Electric Literature of 100442-33-9, As an important bridge between the micro and macro material world, chemistry is one of the main methods and means for humans to understand and transform the material world. 100442-33-9, Name is 1-(3,3-Diphenyl-N-methylpropylamino)-2-methyl-2-propanol, SMILES is C1(=CC=CC=C1)C(CCN(C)CC(C)(O)C)C2=CC=CC=C2, belongs to alcohols-buliding-blocks compound. In a article, author is Liang, Shuwei, introduce new discover of the category.

Construction of graphene oxide membrane through non-covalent cross-linking by sulfonated cyclodextrin for ultra-permeable butanol dehydration

Two-dimensional (2D) lamellar graphene oxide (GO) membranes represent promising porous materials in alcohol dehydration. The separation performance can be manipulated by the physicochemical properties of interlayer channels. The relatively low flux and poor stability of GO-based membranes in aqueous environment are the major drawbacks. Herein, we intercalated a supramolecular compound, sulfobutyl-beta-cyclodextrin (SCD), into the interlayer pores/channels of GO membranes. The sulfonic acid groups on SCD molecules are able to cross-link adjacent GO nanosheets through non-covalent interactions. The GO-SCD membranes possess excellent water affinity due to the presence of high hydrophilic sulfonic acid groups. For the n-butanol dehydration, the GO-SCD/PTFE membranes with well-defined interlayer pores exhibited ultrahigh permeation flux of 12955 g m(-2) and separation factor of 1299 under 80 degrees C. The membranes remained stable in 144 h separation performance evaluation test and exhibited obviously enhanced thermal stability.

Electric Literature of 100442-33-9, Each elementary reaction can be described in terms of its molecularity, the number of molecules that collide in that step. The slowest step in a reaction mechanism is the rate-determining step.you can also check out more blogs about 100442-33-9.

Reference:
Alcohol – Wikipedia,
,Alcohols – Chemistry LibreTexts