D-Index & Metrics Best Publications

D-Index & Metrics

Discipline name D-index D-index (Discipline H-index) only includes papers and citation values for an examined discipline in contrast to General H-index which accounts for publications across all disciplines. Citations Publications World Ranking National Ranking
Chemistry D-index 50 Citations 8,499 352 World Ranking 8839 National Ranking 178

Overview

What is he best known for?

The fields of study he is best known for:

  • Organic chemistry
  • Catalysis
  • Stereochemistry

Hans Schmid focuses on Stereochemistry, Medicinal chemistry, Catalysis, Yield and Ether. His Stereochemistry research incorporates elements of Benzene, Group, Aldehyde, Propargyl and Ketone. His research integrates issues of Adduct, Organic chemistry and Azirine in his study of Medicinal chemistry.

His Catalysis research includes elements of Condensation, Pyrazole and Cis–trans isomerism. In his study, which falls under the umbrella issue of Yield, Ethyl acetoacetate, Acyl group and Cleavage is strongly linked to Ring. His work deals with themes such as Aryl, Claisen rearrangement, Radical and Toluene, which intersect with Ether.

His most cited work include:

  • EAU guidelines on prostate cancer (2929 citations)
  • Some Properties of Ferromagnetoelectric Nickel‐Iodine Boracite, Ni3B7O13I (291 citations)
  • Measurement of the Quadratic Magnetoelectric Effect on Single Crystalline BiFeO3 (241 citations)

What are the main themes of his work throughout his whole career to date?

The scientist’s investigation covers issues in Stereochemistry, Medicinal chemistry, Organic chemistry, Yield and Photochemistry. He works in the field of Stereochemistry, namely Sigmatropic reaction. The Medicinal chemistry study combines topics in areas such as Ketone, Cycloaddition, Benzene and Azirine.

He most often published in these fields:

  • Stereochemistry (38.22%)
  • Medicinal chemistry (33.89%)
  • Organic chemistry (10.58%)

What were the highlights of his more recent work (between 1984-2019)?

  • Boracite (5.77%)
  • Ferroelectricity (5.77%)
  • Crystallography (3.61%)

In recent papers he was focusing on the following fields of study:

His scientific interests lie mostly in Boracite, Ferroelectricity, Crystallography, Orthorhombic crystal system and Phase. His studies in Boracite integrate themes in fields like Single domain, Ferromagnetism, Nickel, Bromine and Antiferromagnetism. His study looks at the intersection of Ferroelectricity and topics like Permittivity with Photorefractive effect, Light intensity, Anomalous photovoltaic effect and Curie temperature.

His Crystallography study combines topics from a wide range of disciplines, such as Wave vector and Group. In his study, Dielectric and Lamellar structure is strongly linked to Polarized light microscopy, which falls under the umbrella field of Orthorhombic crystal system. Hans Schmid combines subjects such as Metallurgy, Stereochemistry and Solvent with his study of Crystal growth.

Between 1984 and 2019, his most popular works were:

  • EAU guidelines on prostate cancer (2929 citations)
  • Measurement of the Quadratic Magnetoelectric Effect on Single Crystalline BiFeO3 (241 citations)
  • EAU guidelines on prostate cancer (148 citations)

In his most recent research, the most cited papers focused on:

  • Organic chemistry
  • Catalysis
  • Hydrogen

His primary areas of investigation include Ferroelectricity, Humanities, Phase, Prostate-specific antigen and Internal medicine. Hans Schmid interconnects Orthorhombic crystal system, Ferromagnetism, Polarization, Wave vector and Antiferromagnetism in the investigation of issues within Ferroelectricity. His Phase study combines topics in areas such as Phase transition and Polarized light microscopy.

Hans Schmid has researched Prostate-specific antigen in several fields, including Surgery, Chemotherapy and Performance status. Much of his study explores Internal medicine relationship to Oncology. His Prostatectomy research is multidisciplinary, relying on both Androgen suppression, Hormonal therapy, Randomized controlled trial and Radiation therapy.

This overview was generated by a machine learning system which analysed the scientist’s body of work. If you have any feedback, you can contact us here.

Best Publications

EAU guidelines on prostate cancer

Axel Heidenreich;Gunnar Aus;Michel Bolla;Steven Joniau.
European Urology (2001)

2929 Citations

Some Properties of Ferromagnetoelectric Nickel‐Iodine Boracite, Ni3B7O13I

Edgar Ascher;Harry Rieder;Hans Schmid;H. Stössel.
Journal of Applied Physics (1966)

448 Citations

Measurement of the Quadratic Magnetoelectric Effect on Single Crystalline BiFeO3

C. Tabares-Mun̄oz;J. P. Rivera;A. Bezinges;A. Monnier.
Japanese Journal of Applied Physics (1985)

366 Citations

EAU guidelines on prostate cancer

Axel Heidenreich;Gunna Aus;Michel Bolla;Steven Joniau.
Actas Urologicas Espanolas (2009)

224 Citations

Sigmatropische Umlagerungen von Aryl‐propargyläthern; Synthese von 1, 5‐Dimethyl‐6‐methylen‐tricyclo[3, 2, 1, 02,7]‐oct‐3‐en‐8‐on‐Derivaten. Vorläufige Mitteilung

J. Zsindely;H. Schmid.
Helvetica Chimica Acta (1968)

193 Citations

Guía de la EAU sobre el cáncer de próstata: Parte I: cribado, diagnóstico y tratamiento del cáncer clínicamente localizado

A. Heidenreich;Joaquim Bellmunt;M. Bolla;S. Joniau.
Actas Urologicas Espanolas (2011)

138 Citations

Die Strukturen von C‐Fluorocurin, C‐Mavacurin und Pleiocarpamin. 57. Mitteilung über Curare‐Alkaloide

M. Hesse;W. V. Philipsborn;D. Schumann;G. Spiteller.
Helvetica Chimica Acta (1964)

124 Citations

Stereochemie des Übergangszustandes aliphatischer CLAISEN‐Umlagerungen. Vorläufige Mitteilung

P. Vittorelli;T. Winkler;H.‐J. Hansen;H. Schmid.
Helvetica Chimica Acta (1968)

118 Citations

Umlagerung von Allyl‐aryläthern und Allyl‐cyclohexadienonen mittels Bortrichlorid

J. Borgulya;R. Madeja;P. Fahrni;Hans-Jürgen Hansen.
Helvetica Chimica Acta (1973)

106 Citations

Zur Kenntnis des Fluorocurins und Mavacurins. 15. Mitteilung über Curare‐Alkaloide aus Calebassen

H. Bickel;H. Schmid;P. Karrer.
Helvetica Chimica Acta (1955)

106 Citations

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