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Dive into the research topics where Claudia M. Cardona is active.

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Featured researches published by Claudia M. Cardona.


Advanced Materials | 2011

Electrochemical considerations for determining absolute frontier orbital energy levels of conjugated polymers for solar cell applications.

Claudia M. Cardona; Wei Li; Angel E. Kaifer; David Stockdale; Guillermo C. Bazan

Narrow bandgap conjugated polymers in combination with fullerene acceptors are under intense investigation in the field of organic photovoltaics (OPVs). The open circuit voltage, and thereby the power conversion efficiency, of the devices is related to the offset of the frontier orbital energy levels of the donor and acceptor components, which are widely determined by cyclic voltammetry. Inconsistencies have appeared in the use of the ferrocenium/ferrocene (Fc + /Fc) redox couple, as well as the values used for the absolute potentials of standard electrodes, which can complicate the comparison of materials properties and determination of structure/property relationships.


Nature Materials | 2009

Endohedral fullerenes for organic photovoltaic devices

Russel Ross; Claudia M. Cardona; Dirk M. Guldi; Shankara G. Sankaranarayanan; Matthew O. Reese; Nikos Kopidakis; Jeff Peet; Bright Walker; Guillermo C. Bazan; Edward Van Keuren; Brian C. Holloway; Martin Drees

So far, one of the fundamental limitations of organic photovoltaic (OPV) device power conversion efficiencies (PCEs) has been the low voltage output caused by a molecular orbital mismatch between the donor polymer and acceptor molecules. Here, we present a means of addressing the low voltage output by introducing novel trimetallic nitride endohedral fullerenes (TNEFs) as acceptor materials for use in photovoltaic devices. TNEFs were discovered in 1999 by Stevenson et al. ; for the first time derivatives of the TNEF acceptor, Lu(3)N@C(80), are synthesized and integrated into OPV devices. The reduced energy offset of the molecular orbitals of Lu(3)N@C(80) to the donor, poly(3-hexyl)thiophene (P3HT), reduces energy losses in the charge transfer process and increases the open circuit voltage (Voc) to 260 mV above reference devices made with [6,6]-phenyl-C(61)-butyric methyl ester (C(60)-PCBM) acceptor. PCEs >4% have been observed using P3HT as the donor material. This work clears a path towards higher PCEs in OPV devices by demonstrating that high-yield charge separation can occur with OPV systems that have a reduced donor/acceptor lowest unoccupied molecular orbital energy offset.


Chemistry: A European Journal | 2009

Metal Nitride Cluster Fullerene M3N@C80 (M=Y, Sc) Based Dyads: Synthesis, and Electrochemical, Theoretical and Photophysical Studies

Julio R. Pinzón; Claudia M. Cardona; María Ángeles Herranz; Marta E. Plonska-Brzezinska; Amit Palkar; Andreas J. Athans; Nazario Martín; Antonio Rodríguez-Fortea; Josep M. Poblet; Giovanni Bottari; Tomás Torres; S. Shankara Gayathri; Dirk M. Guldi; Luis Echegoyen

The first pyrrolidine and cyclopropane derivatives of the trimetallic nitride templated (TNT) endohedral metallofullerenes I(h)-Sc(3)N@C(80) and I(h)-Y(3)N@C(80) connected to an electron-donor unit (i.e., tetrathiafulvalene, phthalocyanine or ferrocene) were successfully prepared by 1,3-dipolar cycloaddition reactions of azomethine ylides and Bingel-Hirsch-type reactions. Electrochemical studies confirmed the formation of the [6,6] regioisomers for the Y(3)N@C(80)-based dyads and the [5,6] regioisomers in the case of Sc(3)N@C(80)-based dyads. Similar to other TNT endohedral metallofullerene systems previously synthesized, irreversible reductive behavior was observed for the [6,6]-Y(3)N@C(80)-based dyads, whereas the [5,6]-Sc(3)N@C(80)-based dyads exhibited reversible reductive electrochemistry. Density functional calculations were also carried out on these dyads confirming the importance of these structures as electron transfer model systems. Furthermore, photophysical investigations on a ferrocenyl-Sc(3)N@C(80)-fulleropyrrolidine dyad demonstrated the existence of a photoinduced electron-transfer process that yields a radical ion pair with a lifetime three times longer than that obtained for the analogous C(60) dyad.


Chemical Science | 2011

Enhanced binding strengths of acyclic porphyrin hosts with endohedral metallofullerenes

Bruno Grimm; Julia Schornbaum; Claudia M. Cardona; John D. van Paauwe; Peter D. W. Boyd; Dirk M. Guldi

The complementary use of spectroscopy and electrochemistry shed light onto the supramolecular interactions of calixarene scaffold bearing bisporphyrins 1 and 2 as hosts with a series of fullerenes –C60, Sc3N@C80, and Lu3N@C80 – as guest molecules. Importantly, the present work shows a noticeable variation in binding strength when C60 or endohedral fullerene guests are included into the bisporphyrins hosts. These sizeable differences could be clarified by computational models of the host–guest complexes, on the one hand, and a systematic investigation of the electron transfer chemistry, on the other hand. Detailed studies document an oxidative charge transfer (i.e., electron transfer from the bisporphyrin to the fullerene) for the C60 inclusion complexes, while a reductive charge transfer (i.e., electron transfer from the fullerene to porphyrin) is operative in the endohedral metallofullerene host–guest complexes.


Angewandte Chemie | 2006

Cover Picture: Retro‐Cycloaddition Reaction of Pyrrolidinofullerenes (Angew. Chem. Int. Ed. 1/2006)

Nazario Martín; Margarita Altable; Salvatore Filippone; Angel Martín-Domenech; Luis Echegoyen; Claudia M. Cardona


Journal of the American Chemical Society | 2006

Unexpected Chemical and Electrochemical Properties of M3N@C80 (M = Sc, Y, Er)

Claudia M. Cardona; Bevan Elliott; Luis Echegoyen


Angewandte Chemie | 2008

Sc3N@C80‐Ferrocene Electron‐Donor/Acceptor Conjugates as Promising Materials for Photovoltaic Applications

Julio R. Pinzón; Marta E. Plonska-Brzezinska; Claudia M. Cardona; Andreas J. Athans; S. Shankara Gayathri; Dirk M. Guldi; M. Ángeles Herranz; Nazario Martín; Tomás Torres; Luis Echegoyen


Journal of the American Chemical Society | 2005

Trimetallic nitride endohedral metallofullerenes: reactivity dictated by the encapsulated metal cluster.

Claudia M. Cardona; and Alex Kitaygorodskiy; Luis Echegoyen


Angewandte Chemie | 2006

Retro‐Cycloaddition Reaction of Pyrrolidinofullerenes

Nazario Martín; Margarita Altable; Salvatore Filippone; Angel Martín-Domenech; Luis Echegoyen; Claudia M. Cardona


Advanced Functional Materials | 2009

Tuning Conversion Efficiency in Metallo Endohedral Fullerene-Based Organic Photovoltaic Devices

Russel Ross; Claudia M. Cardona; Francis B. Swain; Dirk M. Guldi; Shankara G. Sankaranarayanan; Edward Van Keuren; Brian C. Holloway; Martin Drees

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Luis Echegoyen

University of Texas at El Paso

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Dirk M. Guldi

University of Erlangen-Nuremberg

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Nazario Martín

Complutense University of Madrid

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Martin Drees

Johannes Kepler University of Linz

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Margarita Altable

Complutense University of Madrid

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Salvatore Filippone

Complutense University of Madrid

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Josep M. Poblet

Centre national de la recherche scientifique

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