Daniele Di Lecce

About Daniele Di Lecce

Daniele Di Lecce, With an exceptional h-index of 23 and a recent h-index of 19 (since 2020), a distinguished researcher at University College London, specializes in the field of Electrochemistry, Materials Science, Lithium-Ion Batteries, Lithium-Sulfur Batteries, Sodium-Ion Batteries.

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

Cutting-edge research for a greener sustainable future

Glyme-based electrolytes: suitable solutions for next-generation lithium batteries

Characteristics of a gold-doped electrode for application in high-performance lithium-sulfur battery

Novel Lithium‐Sulfur Polymer Battery Operating at Moderate Temperature

Degradation of Layered Oxide Cathode in a Sodium Battery: A Detailed Investigation by X‐Ray Tomography at the Nanoscale

Synthesis of a High-Capacity α-Fe2O3@C Conversion Anode and a High-Voltage LiNi0.5Mn1.5O4 Spinel Cathode and Their Combination in a Li-Ion Battery

2021 roadmap on lithium sulfur batteries

A High-Voltage, Multi-Metal LiNi0. 35Cu0. 1Mn1. 45Fe0. 1O4 Spinel Cathode for Lithium Batteries

Daniele Di Lecce Information

University

Position

Department of Chemical Engineering

Citations(all)

1408

Citations(since 2020)

1130

Cited By

684

hIndex(all)

23

hIndex(since 2020)

19

i10Index(all)

36

i10Index(since 2020)

35

Email

University Profile Page

Google Scholar

Daniele Di Lecce Skills & Research Interests

Electrochemistry

Materials Science

Lithium-Ion Batteries

Lithium-Sulfur Batteries

Sodium-Ion Batteries

Top articles of Daniele Di Lecce

Glyme-based electrolytes: suitable solutions for next-generation lithium batteries

2022

Characteristics of a gold-doped electrode for application in high-performance lithium-sulfur battery

Journal of Energy Chemistry

2022/1/1

Novel Lithium‐Sulfur Polymer Battery Operating at Moderate Temperature

ChemElectroChem

2021

Degradation of Layered Oxide Cathode in a Sodium Battery: A Detailed Investigation by X‐Ray Tomography at the Nanoscale

Small Methods

2021/10

Synthesis of a High-Capacity α-Fe2O3@C Conversion Anode and a High-Voltage LiNi0.5Mn1.5O4 Spinel Cathode and Their Combination in a Li-Ion Battery

ACS Applied Energy Materials

2021/7/26

A High-Voltage, Multi-Metal LiNi0. 35Cu0. 1Mn1. 45Fe0. 1O4 Spinel Cathode for Lithium Batteries

Journal of The Electrochemical Society

2021/3/22

The role of synthesis pathway on the microstructural characteristics of sulfur-carbon composites: X-ray imaging and electrochemistry in lithium battery

Journal of Power Sources

2020/10/1

Towards a High‐Performance Lithium‐Metal Battery with Glyme Solution and an Olivine Cathode

ChemElectroChem

2020/6/2

Investigating high-performance sulfur–metal nanocomposites for lithium batteries

Sustainable Energy & Fuels

2020

Current status and future perspectives of lithium metal batteries

2020/12/31

Electrochemical behavior of nanostructured NiO@ C anode in a lithium-ion battery using LiNi⅓Co⅓Mn⅓O2 cathode

Journal of Alloys and Compounds

2020/12/5

See List of Professors in Daniele Di Lecce University(University College London)

Co-Authors

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