Statements (65)
Predicate | Object |
---|---|
gptkbp:instance_of |
gptkb:Scientist
|
gptkbp:academic_advisor |
gptkb:August_Wilhelm_von_Hofmann
|
gptkbp:affiliated_with |
gptkb:University_of_Munich
gptkb:University_of_Berlin |
gptkbp:affiliation |
gptkb:German_Chemical_Society
gptkb:Royal_Society |
gptkbp:alma_mater |
gptkb:University_of_Berlin
|
gptkbp:awards |
gptkb:Nobel_Prize_in_Chemistry
|
gptkbp:born |
October 31, 1835
|
gptkbp:born_in |
gptkb:Berlin
|
gptkbp:children |
gptkb:3
|
gptkbp:contribution |
gptkb:Baeyer_strain_theory
synthesis of indigo Baeyer-Villiger oxidation |
gptkbp:died |
August 20, 1917
|
gptkbp:field |
organic chemistry
|
gptkbp:field_of_study |
gptkb:Chemistry
|
https://www.w3.org/2000/01/rdf-schema#label |
Adolf von Baeyer
|
gptkbp:influenced |
gptkb:Robert_Robinson
organic chemistry |
gptkbp:influenced_by |
gptkb:Justus_von_Liebig
|
gptkbp:known_for |
gptkb:Baeyer_strain_theory
gptkb:Baeyer_test Baeyer’s rule |
gptkbp:legacy |
Baeyer’s role in the establishment of chemical societies in Europe
Baeyer’s contributions to the field of medicinal chemistry Baeyer’s contributions to the field of photochemistry Baeyer’s influence on the development of chemical nomenclature Baeyer’s contributions to the understanding of chemical equilibrium Baeyer’s contributions to chemical theory Baeyer’s contributions to organic synthesis Baeyer’s impact on dye chemistry Baeyer’s influence on industrial chemistry Baeyer’s influence on modern chemistry Baeyer’s research on molecular structure Baeyer’s studies on chemical bonding Baeyer’s studies on stereochemistry Baeyer’s work on indigo dyeing Baeyer’s work on reaction mechanisms Baeyer’s role in the development of chemical education Baeyer’s contributions to the understanding of aromatic compounds Baeyer’s role in promoting scientific collaboration Baeyer’s influence on the development of chemical engineering Baeyer’s influence on the field of analytical chemistry Baeyer’s role in the advancement of chemical education in Germany Baeyer’s studies on the properties of chemical compounds Baeyer’s influence on the understanding of polymer chemistry Baeyer’s impact on the study of reaction kinetics Baeyer’s contributions to the understanding of chemical thermodynamics Baeyer’s contributions to the understanding of chemical safety. Baeyer’s role in the establishment of chemical research institutes Baeyer’s impact on the field of environmental chemistry |
gptkbp:nationality |
gptkb:German
|
gptkbp:notable_for |
Organic chemistry
|
gptkbp:notable_students |
gptkb:Hermann_Staudinger
|
gptkbp:place_of_birth |
Berlin, Prussia
|
gptkbp:place_of_death |
gptkb:Starnberg,_Germany
|
gptkbp:research_areas |
physical chemistry
theoretical chemistry synthetic organic chemistry |
gptkbp:research_focus |
dyes and indigo
|
gptkbp:spouse |
gptkb:Marie_von_Baeyer
|
gptkbp:won |
gptkb:Nobel_Prize_in_Chemistry
|
gptkbp:bfsParent |
gptkb:Order_of_the_White_Eagle
|
gptkbp:bfsLayer |
4
|