Raj Pandya

Raj Pandya

University of Cambridge

H-index: 19

Europe-United Kingdom

About Raj Pandya

Raj Pandya, With an exceptional h-index of 19 and a recent h-index of 19 (since 2020), a distinguished researcher at University of Cambridge, specializes in the field of Spectroscopy, Optical Microscopy, Semiconductors, Energy Storage, Electrochemistry.

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

Adaptive optical imaging with entangled photons

Revisiting the driving force inducing phase separation in PEG-phosphate aqueous biphasic systems

An optical Ising spin glass simulator with tuneable short range couplings

Hole-limited electrochemical doping in conjugated polymers

Three-dimensional operando optical imaging of particle and electrolyte heterogeneities inside Li-ion batteries

Interrogating the Light-Induced Charging Mechanism in Li-Ion Batteries Using Operando Optical Microscopy

Production of Magnetic Arsenic–Phosphorus Alloy Nanoribbons with Small Band Gaps and High Hole Conductivities

Research data supporting" Exciton-Phonon Interactions Govern Charge-Transfer-State Dynamics in CdSe/CdTe Two-Dimensional Colloidal Heterostructures"

Raj Pandya Information

University

Position

Research Fellow

Citations(all)

768

Citations(since 2020)

764

Cited By

145

hIndex(all)

19

hIndex(since 2020)

19

i10Index(all)

24

i10Index(since 2020)

24

Email

University Profile Page

Google Scholar

Raj Pandya Skills & Research Interests

Spectroscopy

Optical Microscopy

Semiconductors

Energy Storage

Electrochemistry

Top articles of Raj Pandya

Adaptive optical imaging with entangled photons

Science

2024/3/8

Revisiting the driving force inducing phase separation in PEG-phosphate aqueous biphasic systems

Faraday Discussions

2024

Raj Pandya
Raj Pandya

H-Index: 7

Russell Cowburn
Russell Cowburn

H-Index: 30

An optical Ising spin glass simulator with tuneable short range couplings

arXiv preprint arXiv:2309.10764

2023/9/19

Hole-limited electrochemical doping in conjugated polymers

Nature Materials

2023/9

Three-dimensional operando optical imaging of particle and electrolyte heterogeneities inside Li-ion batteries

Nature Nanotechnology

2023/10

Interrogating the Light-Induced Charging Mechanism in Li-Ion Batteries Using Operando Optical Microscopy

Nano Letters

2023/8/8

Production of Magnetic Arsenic–Phosphorus Alloy Nanoribbons with Small Band Gaps and High Hole Conductivities

Journal of the American Chemical Society

2023/8/8

Research data supporting" Exciton-Phonon Interactions Govern Charge-Transfer-State Dynamics in CdSe/CdTe Two-Dimensional Colloidal Heterostructures"

2023/7/31

Correlating activity and defects in (photo) electrocatalysts using in-situ transient optical microscopy

arXiv preprint arXiv:2306.13401

2023/6/23

Direct imaging of micrometer-thick interfaces in salt–salt aqueous biphasic systems

Proceedings of the National Academy of Sciences

2023/4/25

Tuning the Coherent Propagation of Organic Exciton-Polaritons through Dark State Delocalization

Advanced Science

2022/4/27

A mechanistic study of the dopant-induced breakdown in halide perovskites using solid state energy storage devices

Energy & Environmental Science

2022

Room temperature optically and magnetically active edges in phosphorene nanoribbons

2022/12/12

Competing oxygen evolution reaction mechanisms revealed by high-speed compressive Raman imaging

arXiv preprint arXiv:2211.05818

2022/11/10

Raj Pandya
Raj Pandya

H-Index: 7

Sylvain Gigan
Sylvain Gigan

H-Index: 41

Dielectric control of reverse intersystem crossing in thermally activated delayed fluorescence emitters

Nature materials

2022/10

Phosphorene nanoribbon-augmented optoelectronics for enhanced hole extraction

Journal of the American Chemical Society

2021/12/17

Untargeted effects in organic exciton–polariton transient spectroscopy: A cautionary tale

The Journal of Chemical Physics

2021/10/21

See List of Professors in Raj Pandya University(University of Cambridge)

Co-Authors

academic-engine