Paul S. Wagenknecht

Paul S. Wagenknecht

Furman University

H-index: 20

North America-United States

About Paul S. Wagenknecht

Paul S. Wagenknecht, With an exceptional h-index of 20 and a recent h-index of 10 (since 2020), a distinguished researcher at Furman University, specializes in the field of transition metal photochemistry and photophysics, inorganic chemistry, electrochemistry.

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

Ligand-to-metal charge-transfer states in emissive d0 metallocenes: Design strategies for titanocene based photocatalysts

Design Strategies for Luminescent Titanocenes: Improving the Photoluminescence and Photostability of Arylethynyltitanocenes

CCDC 2172553: Experimental Crystal Structure Determination

Role of the Trifluoropropynyl Ligand in Blue-Shifting Charge-Transfer States in Emissive Pt Diimine Complexes and an Investigation into the PMMA-Imposed Rigidoluminescence and …

Photochemistry and Photophysics of Charge-Transfer Excited States in Emissive d10/d0 Heterobimetallic Titanocene Tweezer Complexes

Ligand-to-Metal Charge-Transfer Photophysics and Photochemistry of Emissive d0 Titanocenes: A Spectroscopic and Computational Investigation

Insights into the charge-transfer character of electronic transitions in R Cp 2 Ti (C 2 Fc) 2 complexes using solvatochromism, resonance Raman spectroscopy, and TDDFT

Synthesis and characterization of a tert-butyl ester-substituted titanocene dichloride: t-BuOOCCp2TiCl2

Paul S. Wagenknecht Information

University

Position

Professor of Chemistry

Citations(all)

2064

Citations(since 2020)

486

Cited By

1767

hIndex(all)

20

hIndex(since 2020)

10

i10Index(all)

33

i10Index(since 2020)

13

Email

University Profile Page

Furman University

Google Scholar

View Google Scholar Profile

Paul S. Wagenknecht Skills & Research Interests

transition metal photochemistry and photophysics

inorganic chemistry

electrochemistry

Top articles of Paul S. Wagenknecht

Title

Journal

Author(s)

Publication Date

Ligand-to-metal charge-transfer states in emissive d0 metallocenes: Design strategies for titanocene based photocatalysts

Paul S Wagenknecht

2024

Design Strategies for Luminescent Titanocenes: Improving the Photoluminescence and Photostability of Arylethynyltitanocenes

Inorganic Chemistry

Matilda Barker

Thomas J Whittemore

Henry C London

Jack M Sledesky

Elizabeth A Harris

...

2023/10/13

CCDC 2172553: Experimental Crystal Structure Determination

Conor J Bready

George C Shields

Noah C Vieira

Jared A Pienkos

Thomas J Whittemore

...

2022

Role of the Trifluoropropynyl Ligand in Blue-Shifting Charge-Transfer States in Emissive Pt Diimine Complexes and an Investigation into the PMMA-Imposed Rigidoluminescence and …

Inorganic Chemistry

Jackson S McCarthy

Mary Jo McCormick

John H Zimmerman

H Rhodes Hambrick

Wilson M Thomas

...

2022/7/12

Photochemistry and Photophysics of Charge-Transfer Excited States in Emissive d10/d0 Heterobimetallic Titanocene Tweezer Complexes

Inorganic Chemistry

Henry C London

David Y Pritchett

Jared A Pienkos

Colin D McMillen

Thomas J Whittemore

...

2022/7/4

Ligand-to-Metal Charge-Transfer Photophysics and Photochemistry of Emissive d0 Titanocenes: A Spectroscopic and Computational Investigation

Inorganic Chemistry

Henry C London

Thomas J Whittemore

Ariel G Gale

Colin D McMillen

David Y Pritchett

...

2021/9/8

Insights into the charge-transfer character of electronic transitions in R Cp 2 Ti (C 2 Fc) 2 complexes using solvatochromism, resonance Raman spectroscopy, and TDDFT

Dalton Transactions

Elizabeth S Carlton

Joshua J Sutton

Ariel G Gale

George C Shields

Keith C Gordon

...

2021

Synthesis and characterization of a tert-butyl ester-substituted titanocene dichloride: t-BuOOCCp2TiCl2

Acta Crystallographica Section E: Crystallographic Communications

Jackson S McCarthy

Colin D McMillen

Jared A Pienkos

Paul S Wagenknecht

2020/10/1

Is indenyl a stronger or weaker electron donor ligand than cyclopentadienyl? Opposing effects of indenyl electron density and ring slipping on electrochemical potentials

Organometallics

Khiem T Nguyen

Emily E Lane

Colin D McMillen

Jared A Pienkos

Paul S Wagenknecht

2020/1/23

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