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Chemistry (Weinheim an Der Bergstrasse, Germany)|July 22, 2014
A doping technique that suppresses undesirable H2 evolution derived from overall water splitting in the highly selective photocatalytic conversion of CO2 in and by waterKentaro Teramura, Zheng Wang, Saburo Hosokawa, et al.
ACS Applied Materials & Interfaces|April 6, 2026
Design of Pd-Metal Oxide Heterojunction Interfaces through Mg-Al-Mn-Based Spinel Oxides for Efficient NO ReductionReito Kobayashi, Shugoro Tsutsumi, Toyokazu Tanabe, et al.
Chemical Science|October 10, 2017
Efficient photocatalytic carbon monoxide production from ammonia and carbon dioxide by the aid of artificial photosynthesisZeai Huang, Kentaro Teramura, Hiroyuki Asakura, et al.
Physical Chemistry Chemical Physics : PCCP|December 11, 2020
A theoretical investigation into the role of catalyst support and regioselectivity of molecular adsorption on a metal oxide surface: NO reduction on Cu/γ-aluminaWataru Ota, Yasuro Kojima, Saburo Hosokawa, et al.
Chemical Communications (Cambridge, England)|July 2, 2009
A heterogeneous Ru/CeO2 catalyst effective for transfer-allylation from homoallyl alcohols to aldehydesHiroki Miura, Kenji Wada, Saburo Hosokawa, et al.
Physical Chemistry Chemical Physics : PCCP|October 1, 2020
Low-temperature NO oxidation using lattice oxygen in Fe-site substituted SrFeO3-δKazuki Tamai, Saburo Hosokawa, Kazuo Kato, et al.
ACS Applied Materials & Interfaces|July 3, 2019
NO Oxidation and Storage Properties of a Ruddlesden-Popper-Type Sr3Fe2O7-δ-Layered Perovskite CatalystKazuki Tamai, Saburo Hosokawa, Hiroshi Okamoto, et al.
Chemcatchem|May 19, 2017
A Theoretical Investigation on CO Oxidation by Single-Atom Catalysts M1/γ-Al2O3 (M=Pd, Fe, Co, and Ni)Tao Yang, Ryoichi Fukuda, Saburo Hosokawa, et al.
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