David J. Lewis

David J. Lewis

Manchester University

H-index: 35

North America-United States

About David J. Lewis

David J. Lewis, With an exceptional h-index of 35 and a recent h-index of 28 (since 2020), a distinguished researcher at Manchester University, specializes in the field of Inorganic Materials, Nanomaterials, Materials Chemistry.

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

Exceptional Thermoelectric Performance of Cu2(Zn,Fe,Cd)SnS4 Thin Films

Enhancing the thermoelectric properties of TiO2-based ceramics through addition of carbon black and graphene oxide

A combined experimental and modelling approach for the evaluation of the thermoelectric properties of Ag-doped SnS

Ultra-low thermal conductivity in a perovskite oxide thermoelectric through entropy engineering

Effect of graphene oxide and carbon black on the thermoelectric performance of niobium doped strontium titanate

Electronic transport and the thermoelectric properties of donor-doped SrTiO3

Deposition of a high entropy thin film by aerosol-assisted chemical vapor deposition

Synthetic Strategies toward High Entropy Materials: Atoms-to-Lattices for Maximum Disorder

David J. Lewis Information

University

Position

Deputy Head of Department and Reader in Materials Chemistry U.K.

Citations(all)

5388

Citations(since 2020)

3440

Cited By

3415

hIndex(all)

35

hIndex(since 2020)

28

i10Index(all)

80

i10Index(since 2020)

77

Email

University Profile Page

Manchester University

Google Scholar

View Google Scholar Profile

David J. Lewis Skills & Research Interests

Inorganic Materials

Nanomaterials

Materials Chemistry

Top articles of David J. Lewis

Title

Journal

Author(s)

Publication Date

Exceptional Thermoelectric Performance of Cu2(Zn,Fe,Cd)SnS4 Thin Films

ACS Applied Materials & Interfaces

Yu Liu

Paul D McNaughter

Xiaodong Liu

Andrey V Kretinin

Jonathan M Skelton

...

2024/2/8

Enhancing the thermoelectric properties of TiO2-based ceramics through addition of carbon black and graphene oxide

Carbon

Xiaodong Liu

Suwei Li

Jincheng Yu

Yibing Zhu

Kailing Lin

...

2024/1/5

A combined experimental and modelling approach for the evaluation of the thermoelectric properties of Ag-doped SnS

Journal of Materials Chemistry C

Yu Liu

Jonathan M Skelton

Xiuqi Xia

Yibing Zhu

David J Lewis

...

2024

Ultra-low thermal conductivity in a perovskite oxide thermoelectric through entropy engineering

Journal of the European Ceramic Society

Yibing Zhu

Xiaodong Liu

Mark A Buckingham

Paribesh Acharyya

Emmanuel Guilmeau

...

2024/7/1

Effect of graphene oxide and carbon black on the thermoelectric performance of niobium doped strontium titanate

Journal of Alloys and Compounds

Yibing Zhu

Dursun Ekren

Jianyun Cao

Xiaodong Liu

Stephanie R Mudd

...

2024/6/15

Electronic transport and the thermoelectric properties of donor-doped SrTiO3

Journal of Physics: Energy

Yibing Zhu

Jonathan M Skelton

David J Lewis

Robert Freer

2024/4/18

Deposition of a high entropy thin film by aerosol-assisted chemical vapor deposition

Chemical Communications

Weichen Xiao

Mark Andrew Buckingham

Yi Li

Kerry Hazeldine

Bing Han

...

2023

Synthetic Strategies toward High Entropy Materials: Atoms-to-Lattices for Maximum Disorder

Mark A Buckingham

Jonathan M Skelton

David J Lewis

2023/8/31

High-entropy materials for electrochemical energy storage devices

Energy Advances

Jie Qu

Mark Andrew Buckingham

David J Lewis

2023

Fabrication of High Quality Bornite and Chalcopyrite Thin Films by Aerosol-Assisted Chemical Vapor Deposition

The Journal of Physical Chemistry C

Abraham Barde

David J Lewis

2023/7/10

Copper diaryl-dithiocarbamate complexes and their application as single source precursors (SSPs) for copper sulfide nanomaterials

New Journal of Chemistry

Jagodish C Sarker

Xiang Xu

Firoz Alam

Rosie Nash

Suwimon Boonrungsiman

...

2023

A Low‐Temperature Synthetic Route Toward a High‐Entropy 2D Hexernary Transition Metal Dichalcogenide for Hydrogen Evolution Electrocatalysis

Advanced Science

Jie Qu

Amr Elgendy

Rongsheng Cai

Mark A Buckingham

Athanasios A Papaderakis

...

2023/5

Synthesis of diaryl dithiocarbamate complexes of zinc and their uses as single source precursors for nanoscale ZnS

Inorganica Chimica Acta

Jagodish C Sarker

Firoz Alam

Paul McNaughter

David Pugh

Jeremy K Cockcroft

...

2023/10/1

Environment effects upon electrodeposition of thin film copper oxide nanomaterials

Journal of Materials Chemistry C

Mark A. Buckingham

Weichen Xiao

Brendan Ward O'Brien

Kathryn Yearsley

Usama Zulfiqar

...

2023

Enhanced Thermoelectric Performance of Tin (II) Sulfide Thin Films Prepared by Aerosol Assisted Chemical Vapor Deposition

ACS Applied Energy Materials

Yu Liu

Paul D McNaughter

Feridoon Azough

Xiaodong Liu

Jonathan M Skelton

...

2023/4/3

Synthesis of High Entropy and Entropy-Stabilized Metal Sulfides and Their Evaluation as Hydrogen Evolution Electrocatalysts

Chemistry of Materials

Weichen Xiao

Yi Li

Amr Elgendy

Ercin C Duran

Mark A Buckingham

...

2023/9/19

Synthesis and characterisation of Ga-and In-doped CdS by solventless thermolysis of single source precursors

Dalton Transactions

Suliman A Alderhami

Ruben Ahumada-Lazo

Mark A Buckingham

David J Binks

Paul O'Brien

...

2023

Precursor-led grain boundary engineering for superior thermoelectric performance in niobium strontium titanate

ACS applied materials & interfaces

Yibing Zhu

Feridoon Azough

Xiaodong Liu

Xiangli Zhong

Minghao Zhao

...

2023/2/28

Thermoelectric Performance of Tetrahedrite (Cu12Sb4S13) Thin Films: The Influence of the Substrate and Interlayer

ACS Applied Electronic Materials

Yu Liu

Andrey V Kretinin

Xiaodong Liu

Weichen Xiao

David J Lewis

...

2023/9/11

Spherical hydroxyapatite nanoparticle scaffolds for reduced lead release from damaged perovskite solar cells

Communications Materials

Muhamad Z Mokhtar

Amal Altujjar

Bing Wang

Qian Chen

Jack Chun-Ren Ke

...

2022/10/19

See List of Professors in David J. Lewis University(Manchester University)