Neil S Beattie

Neil S Beattie

Northumbria University

H-index: 15

Europe-United Kingdom

About Neil S Beattie

Neil S Beattie, With an exceptional h-index of 15 and a recent h-index of 12 (since 2020), a distinguished researcher at Northumbria University, specializes in the field of Physics, Photovoltaics, Renewable Energy, Innovation.

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

Enhanced Carrier Collection in Cd/In-Based Dual Buffers in Kesterite Thin-Film Solar Cells from Nanoparticle Inks

A comparison of ZnO nanowires grown using hexamethylenetetramine and ammonium hydroxide on Al: ZnO nanoparticle seed layer

A structural, optical and electrical comparison between physical vapour deposition and slot-die deposition of Al: ZnO (AZO)

Slot-die Fabrication of Solution-processed Kesterite Solar Cells for Product Integrated Photovoltaics

Elimination of the carbon-rich layer in Cu2ZnSn (S, Se) 4 absorbers prepared from nanoparticle inks

Exploring the Role of Temperature and Hole Transport Layer on the Ribbon Orientation and Efficiency of Sb2Se3 cells Deposited via Thermal Evaporation

Recovery mechanisms in aged kesterite solar cells

Ex situ Ge-doping of CZTS nanocrystals and CZTSSe solar absorber films

Neil S Beattie Information

University

Position

Professor

Citations(all)

2539

Citations(since 2020)

761

Cited By

2107

hIndex(all)

15

hIndex(since 2020)

12

i10Index(all)

21

i10Index(since 2020)

16

Email

University Profile Page

Google Scholar

Neil S Beattie Skills & Research Interests

Physics

Photovoltaics

Renewable Energy

Innovation

Top articles of Neil S Beattie

Enhanced Carrier Collection in Cd/In-Based Dual Buffers in Kesterite Thin-Film Solar Cells from Nanoparticle Inks

ACS Applied Energy Materials

2023/10/27

A comparison of ZnO nanowires grown using hexamethylenetetramine and ammonium hydroxide on Al: ZnO nanoparticle seed layer

Journal of Materials Science: Materials in Electronics

2023/7

A structural, optical and electrical comparison between physical vapour deposition and slot-die deposition of Al: ZnO (AZO)

MRS Advances

2023/6

Slot-die Fabrication of Solution-processed Kesterite Solar Cells for Product Integrated Photovoltaics

2022/6/5

Elimination of the carbon-rich layer in Cu2ZnSn (S, Se) 4 absorbers prepared from nanoparticle inks

2022/6/5

Exploring the Role of Temperature and Hole Transport Layer on the Ribbon Orientation and Efficiency of Sb2Se3 cells Deposited via Thermal Evaporation

2022/6/5

Ex situ Ge-doping of CZTS nanocrystals and CZTSSe solar absorber films

Faraday Discussions

2022

Routes to increase performance for antimony selenide solar cells using inorganic hole transport layers

Frontiers in Chemistry

2022/9/26

Innovative fabrication of low-cost kesterite solar cells for distributed energy applications

2020/6/15

Defect limitations in Cu2ZnSn (S, Se) 4 solar cells utilizing an In2S3 buffer layer

Journal of Applied Physics

2020/5/29

See List of Professors in Neil S Beattie University(Northumbria University)