Mario Leclerc

Mario Leclerc

Université Laval

H-index: 105

North America-Canada

About Mario Leclerc

Mario Leclerc, With an exceptional h-index of 105 and a recent h-index of 47 (since 2020), a distinguished researcher at Université Laval, specializes in the field of chemistry, materials, polymers, polymer science.

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

Development of a cross-linkable, EDOT-based conjugated polymer for stable temperature sensors

Liquid-Phase Exfoliation of Graphite in a Low-Boiling-Point Solvent Using 2, 6-Azulene-Based Conjugated Copolymers as Stabilizers

Synthesis and properties of 2, 6-azulene-based conjugated polymers and their applications in dispersing single-walled carbon nanotubes

Conducting polymers: Towards printable transparent electrodes

Water-Processable Self-Doped Hole-Injection Layer for Large-Area, Air-Processed, Slot-Die-Coated Flexible Organic Light-Emitting Diodes

Evaluating polythiophenes as temperature sensing materials using combinatorial inkjet printing

Toward Defect Suppression in Polythiophenes Synthesized by Direct (Hetero) Arylation Polymerization

Direct Heteroarylation Guidelines for Well-Defined Thiophene-Based Conjugated Molecules

Mario Leclerc Information

University

Position

Département de Chimie

Citations(all)

49234

Citations(since 2020)

12533

Cited By

41808

hIndex(all)

105

hIndex(since 2020)

47

i10Index(all)

310

i10Index(since 2020)

160

Email

University Profile Page

Google Scholar

Mario Leclerc Skills & Research Interests

chemistry

materials

polymers

polymer science

Top articles of Mario Leclerc

Development of a cross-linkable, EDOT-based conjugated polymer for stable temperature sensors

Flexible and Printed Electronics

2024/3/15

Mario Leclerc
Mario Leclerc

H-Index: 54

Liquid-Phase Exfoliation of Graphite in a Low-Boiling-Point Solvent Using 2, 6-Azulene-Based Conjugated Copolymers as Stabilizers

ACS Applied Polymer Materials

2023/12/12

Mario Leclerc
Mario Leclerc

H-Index: 54

Synthesis and properties of 2, 6-azulene-based conjugated polymers and their applications in dispersing single-walled carbon nanotubes

Polymer Chemistry

2023

Mario Leclerc
Mario Leclerc

H-Index: 54

Conducting polymers: Towards printable transparent electrodes

2023/12/2

Mario Leclerc
Mario Leclerc

H-Index: 54

Water-Processable Self-Doped Hole-Injection Layer for Large-Area, Air-Processed, Slot-Die-Coated Flexible Organic Light-Emitting Diodes

Chemistry of Materials

2023/11/1

Evaluating polythiophenes as temperature sensing materials using combinatorial inkjet printing

Flexible and Printed Electronics

2023/3/23

Mario Leclerc
Mario Leclerc

H-Index: 54

Toward Defect Suppression in Polythiophenes Synthesized by Direct (Hetero) Arylation Polymerization

Macromolecules

2023/2/16

Samuel Brassard
Samuel Brassard

H-Index: 2

Mario Leclerc
Mario Leclerc

H-Index: 54

Direct Heteroarylation Guidelines for Well-Defined Thiophene-Based Conjugated Molecules

The Journal of Organic Chemistry

2023/2/9

Samuel Brassard
Samuel Brassard

H-Index: 2

Mario Leclerc
Mario Leclerc

H-Index: 54

Biosourced monomers: Toward sustainable conjugated polymers for organic electronics

Macromolecular Chemistry and Physics

2023/2

Mario Leclerc
Mario Leclerc

H-Index: 54

Effects of energetic disorder in bulk heterojunction organic solar cells

2022

2, 9-Dibenzo [b, def] chrysene as a building block for organic electronics

Materials Advances

2022

Printed temperature sensor based on self-doped conducting polymers

Flexible and Printed Electronics

2022/11/7

Charles Trudeau
Charles Trudeau

H-Index: 8

Mario Leclerc
Mario Leclerc

H-Index: 54

Unified understanding of molecular weight dependence of electron transport in naphthalene diimide-based n-type semiconducting polymers

Chemistry of Materials

2022/10/18

Strategies for the synthesis of water-soluble conjugated polymers

2022/8/1

Mario Leclerc
Mario Leclerc

H-Index: 54

Chapitre 2: Synthesis of New n-Type Isoindigo Copolymers.

Synthèse de polymères d'isoindigo utilisant de nouvelles méthodes évolutives de polymérisation par (hétéro) arylation directe

2021

Mario Leclerc
Mario Leclerc

H-Index: 54

Water-processable self-doped conducting polymers via direct (hetero) arylation polymerization

Macromolecules

2021/6/10

Mario Leclerc
Mario Leclerc

H-Index: 54

Low-bandgap non-fullerene acceptors enabling high-performance organic solar cells

ACS Energy Letters

2021/1/21

Biosourced Vanillin-Based Building Blocks for Organic Electronic Materials

The Journal of Organic Chemistry

2021/11/12

Mario Leclerc
Mario Leclerc

H-Index: 54

Chapitre 3: Electroactive and photoactive poly [Isoindigo-alt-EDOT] synthesized using direct (hetero) arylation polymerization in batch and in continuous flow

Synthèse de polymères d'isoindigo utilisant de nouvelles méthodes évolutives de polymérisation par (hétéro) arylation directe

2021

Theoretical insights into optoelectronic properties of non-fullerene acceptors for the design of organic photovoltaics

ACS Applied Energy Materials

2021/9/24

Ian G Hill
Ian G Hill

H-Index: 32

Mario Leclerc
Mario Leclerc

H-Index: 54

See List of Professors in Mario Leclerc University(Université Laval)

Co-Authors

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