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Francesc Teixidor

Researcher at Institute of Cost and Management Accountants of Bangladesh

Publications -  444
Citations -  12019

Francesc Teixidor is an academic researcher from Institute of Cost and Management Accountants of Bangladesh. The author has contributed to research in topics: Carborane & Ligand. The author has an hindex of 50, co-authored 426 publications receiving 10476 citations. Previous affiliations of Francesc Teixidor include Autonomous University of Barcelona & University of Liège.

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Electrochemistry and Photoluminescence of Icosahedral Carboranes, Boranes, Metallacarboranes, and Their Derivatives

TL;DR: This review deals with the redox properties and photoluminescence behavior of this collection of compounds, as well as their influence on the properties of materials and devices whose working principles are related to electron-transfer or electron-promotion phenomena.
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Methods to produce B–C, B–P, B–N and B–S bonds in boron clusters

TL;DR: In this review the current methods of producing boron clusters with carbon, B-C, nitrogen,B-N, phosphorus, B -P and sulphur bonds are indicated and there are many existing borane clusters of different sizes, heteroboranes and metallacarboranes.
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π Aromaticity and Three-Dimensional Aromaticity: Two sides of the Same Coin?

TL;DR: Application of the proposed electronic confined space analogy (ECSA) method to archetypal PAHs leads to the conclusion that the 4n+2 Wade-Mingos rule for three-dimensional closo boranes is equivalent to the (4n-2)π Hückel rule for two-dimensional PAH's.
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Icosahedral boron clusters: A perfect tool for the enhancement of polymer features

TL;DR: This review focuses on the development of hybrid organic-inorganic π conjugated, silane, siloxane and coordination polymers containing icosahedral boron clusters in the last few decades, which have received considerable academic and technological interest.
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Are methyl groups electron-donating or electron-withdrawing in boron clusters? Permethylation of o-carborane.

TL;DR: At the B3LYP/6-31G* level of theory, it has been proven that the Mulliken charge on each boron after substitution of -H by -Me increases by +0.18 unit, which leads to a high build-up of positive charge upon permethylation, then hampering it.