Search Results - "NORITATSU, Tsubaki"
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Significant Advances in C1 Catalysis: Highly Efficient Catalysts and Catalytic Reactions
Published in ACS catalysis (05-04-2019)“…C1 catalysis refers to the conversion of simple carbon-containing compounds, such as carbon monoxide, carbon dioxide, methane, and methanol into…”
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One-pass selective conversion of syngas to para -xylene
Published in Chemical science (Cambridge) (2017)“…The finite petroleum resources and environmental crisis compel the development of non-petroleum carbon resources by chemical transformation routes. Syngas (CO…”
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Catalysis Chemistry of Dimethyl Ether Synthesis
Published in ACS catalysis (03-10-2014)“…Dimethyl ether (DME) is receiving great attention as a clean alternative fuel, owing to the increasing energy demand. Despite tremendous efforts, catalytic…”
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Metal 3D printing technology for functional integration of catalytic system
Published in Nature communications (14-08-2020)“…Mechanical properties and geometries of printed products have been extensively studied in metal 3D printing. However, chemical properties and catalytic…”
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Recent progress for direct synthesis of dimethyl ether from syngas on the heterogeneous bifunctional hybrid catalysts
Published in Applied catalysis. B, Environmental (15-11-2017)“…[Display omitted] •Dimethyl ether (DME) is a multi-purpose alternative synthetic fuel for diesel and liquefied petroleum gas.•Recent direct DME synthesis from…”
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Rationally Designing Bifunctional Catalysts as an Efficient Strategy To Boost CO2 Hydrogenation Producing Value-Added Aromatics
Published in ACS catalysis (01-02-2019)“…The efficient conversion of CO2 to useful chemicals is a promising way to reduce atmospheric CO2 concentration and also reduce reliance on fossil-based…”
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Ultra-high thermal stability of sputtering reconstructed Cu-based catalysts
Published in Nature communications (10-12-2021)“…The rational design of high-temperature endurable Cu-based catalysts is a long-sought goal since they are suffering from significant sintering. Establishing a…”
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Confined small-sized cobalt catalysts stimulate carbon-chain growth reversely by modifying ASF law of Fischer–Tropsch synthesis
Published in Nature communications (14-08-2018)“…Fischer–Tropsch synthesis (FTS) is a promising technology to convert syngas derived from non-petroleum-based resources to valuable chemicals or fuels…”
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Design of a core-shell catalyst: an effective strategy for suppressing side reactions in syngas for direct selective conversion to light olefins
Published in Chemical science (Cambridge) (18-03-2020)“…An elegant catalyst is designed via the encapsulation of metallic oxide Zn-Cr inside of zeolite SAPO34 as a core-shell structure (Zn-Cr@SAPO) to realize the…”
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Direct Conversion of CO2 to Ethanol Boosted by Intimacy-Sensitive Multifunctional Catalysts
Published in ACS catalysis (17-09-2021)“…It is still a challenge to realize highly efficient conversion of CO2 to a single target chemical. Herein, substantial progress has been made, both in catalyst…”
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Confinement Effect and Synergistic Function of H-ZSM-5/Cu-ZnO-Al2O3 Capsule Catalyst for One-Step Controlled Synthesis
Published in Journal of the American Chemical Society (16-06-2010)“…Dimethyl ether (DME) is an industrially important intermediate, as well as a promising clean fuel, but the effective production through traditionally…”
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Low-temperature direct conversion of methane to methanol over carbon materials supported Pd-Au nanoparticles
Published in Catalysis today (01-01-2020)“…[Display omitted] •The Pd-Au nanoparticles supported on carbon materials catalysts were prepared.•Carbon supported Pd-Au catalysts show excellent reaction…”
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Monodispersed Hollow SO3H‑Functionalized Carbon/Silica as Efficient Solid Acid Catalyst for Esterification of Oleic Acid
Published in ACS applied materials & interfaces (09-12-2015)“…SO3H-functionalized monodispersed hollow carbon/silica spheres (HS/C-SO3H) with primary mesopores were prepared with polystyrene as a template and…”
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Integrated tuneable synthesis of liquid fuels via Fischer–Tropsch technology
Published in Nature catalysis (01-10-2018)“…To tune the product selectivity by controlling the complicated reaction path is a big challenge in Fischer–Tropsch synthesis. Here, we report an integrated…”
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Direct CO2 hydrogenation to light olefins by suppressing CO by-product formation
Published in Fuel processing technology (15-12-2019)“…We evaluate the direct CO2 conversion to light olefins reaction via a hybrid catalyst of In2O3/ZrO2 metallic oxide and zeolite SAPO34 components. On this…”
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Rational Design of Novel Reaction Pathways and Tailor-Made Catalysts for Value-Added Chemicals Synthesis from CO2 Hydrogenation
Published in Bulletin of the Chemical Society of Japan (15-03-2023)“…The highly effective transformation of CO2 into targeted chemicals has attracted significant attention due to greenhouse gas utilization and value-added…”
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Capsule-like zeolite catalyst fabricated by solvent-free strategy for para-Xylene formation from CO2 hydrogenation
Published in Applied catalysis. B, Environmental (01-04-2022)“…An efficient Na-FeMn/HZSM-5@Silicalite-1 catalyst was rationally designed for direct conversion of CO2 to aromatics. The tailor-made HZSM-5@Silicalite-1…”
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Ammonia pools in zeolites for direct fabrication of catalytic centers
Published in Nature communications (17-02-2022)“…Reduction process is a key step to fabricate metal-zeolite catalysts in catalytic synthesis. However, because of the strong interaction force, metal oxides in…”
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FeMn@HZSM-5 capsule catalyst for light olefins direct synthesis via Fischer-Tropsch synthesis: Studies on depressing the CO2 formation
Published in Applied catalysis. B, Environmental (01-01-2022)“…For Fe-based Fischer-Tropsch synthesis catalyst, how to decrease CO2 formation is a big challenge. In this work, a capsule catalyst (FeMn@HZSM-5) with FeMn as…”
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Design and Synthesis of Powerful Capsule Catalysts Aimed at Applications in C1 Chemistry and Biomass Conversion
Published in Chemical record (01-01-2018)“…Tandem catalytic reaction is a promising strategy to improve the utilization efficiency of energy and resources. The conventional hybrid catalysts cannot…”
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