Richard McCreery

Richard McCreery

University of Alberta

H-index: 90

North America-Canada

About Richard McCreery

Richard McCreery, With an exceptional h-index of 90 and a recent h-index of 41 (since 2020), a distinguished researcher at University of Alberta, specializes in the field of Molecular Electronics, electrochemistry, Raman spectroscopy.

His recent articles reflect a diverse array of research interests and contributions to the field:

Ted Kuwana as a Senior Colleague, Mentor and Scientific Leader

Raman thermometry for sensing of hot carriers in gold nanoparticle-based bimetallic photocatalysts

Carbon-based molecular junctions for practical molecular electronics

Hot carrier photocatalysis using bimetallic Au@ Pt hemispherical core–shell nanoislands

A Simple, Semiclassical Mechanism for Activationless, Long RangeCharge Transport in Molecular Junctions

Hot hole transfer from Ag nanoparticles to multiferroic YMn 2 O 5 nanowires enables superior photocatalytic activity

Optical Absorption and Photocurrent Spectroscopy for Investigating Important Length Scales in Molecular Electronics

Carbon electrodes: structural effects on electron transfer kinetics

Richard McCreery Information

University

Position

Professor of Chemistry

Citations(all)

32520

Citations(since 2020)

7159

Cited By

28220

hIndex(all)

90

hIndex(since 2020)

41

i10Index(all)

253

i10Index(since 2020)

134

Email

University Profile Page

Google Scholar

Richard McCreery Skills & Research Interests

Molecular Electronics

electrochemistry

Raman spectroscopy

Top articles of Richard McCreery

Ted Kuwana as a Senior Colleague, Mentor and Scientific Leader

Electroanalysis

2022/12

Raman thermometry for sensing of hot carriers in gold nanoparticle-based bimetallic photocatalysts

2022/10/30

Carbon-based molecular junctions for practical molecular electronics

2022/9/22

Hot carrier photocatalysis using bimetallic Au@ Pt hemispherical core–shell nanoislands

Journal of Materials Science: Materials in Electronics

2022/8

A Simple, Semiclassical Mechanism for Activationless, Long RangeCharge Transport in Molecular Junctions

ECS Journal of Solid State Science and Technology

2022/4/14

Hot hole transfer from Ag nanoparticles to multiferroic YMn 2 O 5 nanowires enables superior photocatalytic activity

Journal of Materials Chemistry C

2022

Optical Absorption and Photocurrent Spectroscopy for Investigating Important Length Scales in Molecular Electronics

arXiv preprint arXiv:2104.04031

2021/4/8

Carbon electrodes: structural effects on electron transfer kinetics

2021/6/30

Evaluation of carbon based molecular junctions as practical photosensors

ACS sensors

2020/12/14

Photostimulated near-resonant charge transport over 60 nm in carbon-based molecular junctions

Journal of the American Chemical Society

2020/8/12

Molecular Signature and Activationless Transport in Cobalt‐Terpyridine‐Based Molecular Junctions

Advanced Electronic Materials

2020/7

Ion-assisted resonant injection and charge storage in carbon-based molecular junctions

Journal of the American Chemical Society

2020/6/21

Solid-state protein junctions: cross-laboratory study shows preservation of mechanism at varying electronic coupling

Iscience

2020/5/22

Redox flow batteries: how to determine electrochemical kinetic parameters

ACS nano

2020/3/17

Large capacity enhancement of carbon electrodes by solution processing for high density energy storage

ACS applied materials & interfaces

2020/2/10

Comment on “Extent of conjugation in diazonium-derived layers in molecular junction devices determined by experiment and modelling” by C. Van Dyck, AJ Bergren, V. Mukundan, JA …

Physical Chemistry Chemical Physics

2020

Evaluation of the electroanalytical performance of carbon-on-gold films prepared by electron-beam evaporation

Analyst

2020

Introducing mesoscopic charge transfer rates into molecular electronics

Physical Chemistry Chemical Physics

2020

See List of Professors in Richard McCreery University(University of Alberta)

Co-Authors

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