Anup Paul

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Universidade de Aveiro
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Portugal

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Recent Grants

Grant: Close

FUNCTIONALIZED POROUS METAL-ORGANIC FRAMEWORKS (MOFs) FOR VERSATILE FUNCTIONALITY

Open Date: 2019-01-15

Close Date:

Grant: Close

MOLECULAR ENGINEERING OF NOVEL METAL-ORGANIC FRAMEWORKS (MOFS) AS FUNCTIONAL POROUS MATERIALS AND THEIR APPLICATIONS IN GAS ADSORPTION AND CATALYSIS

Open Date: 2013-12-15

Close Date: 2017-05-01

Grant: Close

MOLECULAR ENGINEERING OF NOVEL METAL-ORGANIC FRAMEWORKS (MOFS) AS FUNCTIONAL POROUS MATERIALS AND THEIR APPLICATIONS IN GAS ADSORPTION AND CATALYSIS

Open Date: 2013-12-01

Close Date: 2017-05-01

Grant: Close

DESIGN AND SYNTHESIS OF SOME NOVEL METAL-ORGANIC FRAMEWORKS (MOFS) AS FUNCTIONAL POROUS MATERIALS

Open Date: 2013-03-01

Close Date: 2013-12-14

Grant: Close

MOLECULAR ASSEMBLIES BASED ON ORGANOTIN(IV) CARBOXYLATES: SYNTHESIS, STRUCTURE AND BIOLOGICAL EVALUATION

Open Date: 2011-02-01

Close Date: 2012-05-01

Articles (11)

Hydrothermally Synthesized MoS2 as Electrochemical Catalyst for the Fabrication of Thiabendazole Electrochemical Sensor and Dye Sensitized Solar Cells

In this work we reported the hydrothermal preparation of molybdenum disulfide (MoS2). The phase purity and crystalline nature of the synthesized MoS2 were examined via the powder X-ray diffraction method. The surface morphological structure of the MoS2 was examined using scanning electron microscopy and transmission electron microscopy. The specific surface area of the MoS2 was calculated using the Brunauer-Emmett-Teller method. The elemental composition and distribution of the Mo and S elements were determined using energy-dispersive X-ray spectroscopy. The oxidation states of the Mo and S elements were studied through employing X-ray photoelectron spectroscopy. In further studies, we modified the active surface area (3 mm) of the glassy carbon (GC) electrode using MoS2 as an electrocatalyst. The MoS2 modified GC electrode (MSGC) was used as an electrochemical sensor for the detection of thiabendazole (TBZ). Linear sweep voltammetry (LSV) was used as the electrochemical sensing technique. The MSGC exhibited good performance in the detection of TBZ. A limit of detection of 0.1 µM with a sensitivity of 7.47 µA/µM.cm2 was obtained for the detection of TBZ using the LSV method. The MSGC also showed good selectivity for the detection of TBZ in the presence of various interfering compounds. The obtained results showed that MoS2 has good electrocatalytic properties. This motivated us to explore the catalytic properties of MoS2 in dye sensitized solar cells (DSSCs). Thus, we have fabricated DSSCs using MoS2 as a platinum-free counter electrode material. The MoS2 counter electrode-based DSSCs showed good power conversion efficiency of more than 5%. We believe that the present work is beneficial for the scientific community, and especially for research surrounding the design and fabrication of catalysts for electrochemical sensing and DSSC applications.

Year:

2024

Collaborators (9)

M. Fátima C. Guedes da Silva

Associate Professor

Universidade de Lisboa Instituto Superior Técnico

PORTUGAL

Elisabete Alegria

Adjunct Professor

Universidade de Lisboa Instituto Superior Técnico

PORTUGAL

Susanta Hazra

Universidade de Lisboa Instituto Superior Técnico

PORTUGAL

Armando Pombeiro

Full Professor Jubilado

Universidade de Lisboa Instituto Superior Técnico

PORTUGAL

Pedro Miguel Santos

Instituto Superior Técnico

PORTUGAL

Carlos Geraldes

Full Professor

University of Coimbra

PORTUGAL

Manas Sutradhar

Universidade de Lisboa Instituto Superior Técnico

PORTUGAL

Anirban Karmakar

Universidade de Aveiro

PORTUGAL

Sónia A. C. Carabineiro

Universidade de Aveiro

PORTUGAL
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