John Cornforth

@Nobel Prize Winner Chemist, Birthday and Childhood

John Warcup Cornforth was an Australian-British chemist who won the 1975 Nobel Prize in Chemistry

Sep 7, 1917

DeafAustralianBritishOxford UniversityScientistsChemistsOrganic ChemistsVirgo Celebrities
Biography

Personal Details

  • Birthday: September 7, 1917
  • Died on: December 8, 2013
  • Nationality: Australian, British
  • Famous: Nobel Prize Winner Chemist, Oxford University, Scientists, Chemists, Organic Chemists
  • Spouses: Rita Harriet Harradence
  • Known as: Sir John Warcup Cornforth, Jr
  • Universities:
    • Oxford University

John Cornforth born at

Sydney, Australia

Unsplash
Birth Place

He met Rita Harriet Harradence when she was his senior in the University of Sydney, also studying organic chemistry. When she accidentally broke a Claisen flask, he repaired it with his skill of glassblowing. After that, he met her at the Oxford University, London where she was the second person to be selected for the scholarship under the supervision of Sir Robert Robinson.

Unsplash
Personal Life

He married Rita in 1941 and they were blessed with a son, John, and two daughters, Brenda and Philippa. She was his fellow scholar, science collaborator, co-researcher and his life partner, until she died due to an illness on November 6, 2012.

Unsplash
Personal Life

He died on December 8, 2013 in Sussex, England at the age of 96.

Unsplash
Personal Life

He was born on September 7, 1917 in Sydney, Australia to John Warcup Cornforth, an Oxford graduated teacher and Hilda Eipper, descendent of a German minister, who worked as a nurse before her marriage.

Unsplash
Childhood & Early Life

At the age of ten, he was diagnosed with ostoclerosis, a disease of inner ear that causes progressive hearing loss and he was rendered completely deaf by the age of 20.

Unsplash
Childhood & Early Life

He studied in Sydney Boy’s High School where he met a chemistry teacher, Leonard Basser, who inspired and motivated him to conduct experiments in chemistry to understand the working of different objects in nature. He graduated from high school in 1933.

Unsplash
Childhood & Early Life

At the age of 16, he enrolled at the University of Sydney where he studied organic chemistry. In 1937, he graduated with a degree in Bachelor of Science with First Class Honors and the University medal. By this time, he had become completely deaf.

Unsplash
Childhood & Early Life

In 1939, he was one of the candidates, out of two, selected for the scholarship from the Royal Commission for the Exhibition of 1851, tenable overseas for two years. In 1941, he completed his D.Phil in organic chemistry from the Oxford University, England under the guidance of Sir Robert Robinson, an organic chemist and Nobel laureate.

Unsplash
Childhood & Early Life

While he was studying for his doctorate degree in England, World War II broke out and he started working on penicillin along with Sir Robert Robinson. His work concerned with the identifying the structure of the central molecule of penicillin.

Unsplash
Career

After the war, he joined the Medical Research Council and worked on synthesizing sterols, including cholesterol in the National Institute of Medical Research. He worked there for 16 years, from 1946 to 1962.

Unsplash
Career

During the time he worked for Medical Council Research, he collaborated with numerous scientists, including George Popjak, for his research in the bio-organic chemistry.

Unsplash
Career

He was also employed as a Professor at the Warwick University from 1965–71 and at the Sussex University from 1971–82. He remained active in research until his death.

Unsplash
Career

During the 1960s, he collaborated with George Popjak to work on the elucidation of the biosynthetic pathway to polyisoprenoids and steroids which was of noteworthy importance.

Unsplash
Major Works

His most notable work in the field of bio-organic chemistry was concerned with the stereochemistry of enzyme-catalyzed reactions. In his research, he investigated enzymes that catalyze change in organic compounds (substrates) by taking the place of hydrogen atoms in a substrate’s chains and rings. Through his study, he detailed the biosynthesis of cholesterol, an exceptionally complex molecule.

Unsplash
Major Works

His distinguished research on the stereochemically-controlled synthesis and biosynthesis of biologically important molecules is also considered one of his significant works in medical science.

Unsplash
Major Works