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Chemistry

D-Index
57
Citations
13613
World Ranking
10975
National Ranking
392

Overview

Manuel Moliner is affiliated with the Universitat Politècnica de València in Spain. Their research spans multiple fields including materials science, chemistry, and engineering, with a notable focus on materials chemistry and inorganic chemistry. They have contributed extensively to the subfields of catalysis, mechanical engineering, and biomedical engineering.

The main topics of Manuel Moliner's work concentrate on zeolite catalysis and synthesis, catalytic processes in materials science, and catalysis and oxidation reactions. Additional research interests include catalysis and hydrodesulfurization studies, metal-organic frameworks synthesis and applications, mesoporous materials and catalysis, as well as the application of machine learning in materials science.

Among the recent publications authored or co-authored by Manuel Moliner are:

  • A priori control of zeolite phase competition and intergrowth with high-throughput simulations, 2021, Science
  • Discovering Relationships between OSDAs and Zeolites through Data Mining and Generative Neural Networks, 2021, ACS Central Science
  • Tailoring Lewis/Brønsted acid properties of MOF nodes via hydrothermal and solvothermal synthesis: simple approach with exceptional catalytic implications, 2021, Chemical Science
  • Impact of Zeolite Framework Composition and Flexibility on Methanol-To-Olefins Selectivity: Confinement or Diffusion?, 2020, Angewandte Chemie International Edition
  • Metalloenzyme-Inspired Ce-MOF Catalyst for Oxidative Halogenation Reactions, 2021, ACS Applied Materials & Interfaces

Manuel Moliner frequently publishes in venues such as Microporous and Mesoporous Materials, ACS Catalysis, Angewandte Chemie, ACS Central Science, and Angewandte Chemie International Edition. The research contributions across these journals highlight a focus on porous materials and catalytic systems.

Their collaborations include working with several frequent co-authors, including Avelino Corma, Mercedes Boronat, Rafael Gómez-Bombarelli, Estefanía Bello-Jurado, and Daniel Schwalbe-Koda, reflecting a network of researchers active in related scientific fields.

Best Publications

  • Tin-containing zeolites are highly active catalysts for the isomerization of glucose in water

    Manuel Moliner;Yuriy Román-Leshkov;Mark E. Davis

  • Mechanism of Glucose Isomerization Using a Solid Lewis Acid Catalyst in Water

    Yuriy Román-Leshkov;Manuel Moliner;Jay A. Labinger;Mark E. Davis

  • "One-pot" synthesis of 5-(Hydroxymethyl)furfural from carbohydrates using tin-Beta zeolite

    Eranda Nikolla;Yuriy Román-Leshkov;Manuel Moliner;Mark E. Davis

  • The ITQ-37 mesoporous chiral zeolite

    Junliang Sun;Charlotte Bonneau;Ángel Cantín;Avelino Corma

  • High-throughput synthesis and catalytic properties of a molecular sieve with 18- and 10-member rings

    Avelino Corma;María J. Díaz-Cabañas;José Luis Jordá;Cristina Martínez

  • Metalloenzyme-like catalyzed isomerizations of sugars by Lewis acid zeolites

    Ricardo Bermejo-Deval;Rajeev S. Assary;Eranda Nikolla;Manuel Moliner

  • Reversible Transformation of Pt Nanoparticles into Single Atoms inside High-Silica Chabazite Zeolite

    Manuel Moliner;Jadeene E. Gabay;Chris E. Kliewer;Robert T. Carr

  • Towards the Rational Design of Efficient Organic Structure-Directing Agents for Zeolite Synthesis

    Manuel Moliner;Fernando Rey;Avelino Corma

  • Cu-SSZ-39, an active and hydrothermally stable catalyst for the selective catalytic reduction of NOx.

    Manuel Moliner;Cristina Franch;Eduardo Palomares;Marie Grill

  • Multipore zeolites: synthesis and catalytic applications.

    Manuel Moliner;Cristina Martínez;Avelino Corma;Avelino Corma

  • Synthesis Strategies for Preparing Useful Small Pore Zeolites and Zeotypes for Gas Separations and Catalysis

    Manuel Moliner;Cristina Martínez;Avelino Corma

  • A Machine Learning Approach to Zeolite Synthesis Enabled by Automatic Literature Data Extraction.

    Zach Jensen;Edward Kim;Soonhyoung Kwon;Terry Z. H. Gani

  • “Ab initio” synthesis of zeolites for preestablished catalytic reactions

    Eva María Gallego;M. Teresa Portilla;Cecilia Paris;Alejandro León-Escamilla

  • State of the art of Lewis acid-containing zeolites: lessons from fine chemistry to new biomass transformation processes

    Manuel Moliner

  • Structure and catalytic properties of the most complex intergrown zeolite ITQ-39 determined by electron crystallography

    Tom Willhammar;Junliang Sun;Wei Wan;Peter Oleynikov

  • High yield synthesis of high-silica chabazite by combining the role of zeolite precursors and tetraethylammonium: SCR of NOx

    Nuria Martín;Manuel Moliner;Avelino Corma

  • Rational direct synthesis methodology of very active and hydrothermally stable Cu-SAPO-34 molecular sieves for the SCR of NOx

    Raquel Martínez-Franco;Manuel Moliner;Cristina Franch;Arkady Kustov

  • Impact of Controlling the Site Distribution of Al Atoms on Catalytic Properties in Ferrierite-Type Zeolites†

    Yuriy Román-Leshkov;Manuel Moliner;Mark E. Davis

  • Efficient synthesis of the Cu-SSZ-39 catalyst for DeNOx applications

    Nuria Martín;Cristian R. Boruntea;Manuel Moliner;Avelino Corma

  • Building Zeolites from Precrystallized Units: Nanoscale Architecture.

    Chengeng Li;Manuel Moliner;Avelino Corma

Frequent Co-Authors

Avelino Corma
Avelino Corma Universitat Politècnica de València
Mercedes Boronat
Mercedes Boronat Universitat Politècnica de València
Fernando Rey
Fernando Rey Universitat Politècnica de València
Xiaodong Zou
Xiaodong Zou Stockholm University
Junliang Sun
Junliang Sun Peking University
Mark E. Davis
Mark E. Davis California Institute of Technology
Daliang Zhang
Daliang Zhang Chongqing University
José M. Serra
José M. Serra Universitat Politècnica de València
Patricia Concepción
Patricia Concepción Universitat Politècnica de València

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