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Search DetailsShrotri Abhijit
| Institute for Catalysis Catalytic Reaction Research Division | Assistant Professor |
Researcher basic information
■ Degree■ URL
researchmap URLホームページURL■ Various IDs
J-Global ID■ Research Keywords and Fields
Research Keyword
- Glycosylation
- CO2 Conversion
- Chemical engineering
- Biomass conversion
- Metal catalyst
- Carbon
- Cellulose
- Catalysis
- Nanotechnology/Materials, Green sustainable chemistry and environmental chemistry
- Manufacturing Technology (Mechanical Engineering, Electrical and Electronic Engineering, Chemical Engineering), Catalyst and resource chemical process
- Master's degree program, Graduate School of Chemical Sciences and Engineering
- Doctoral (PhD) degree program, Graduate School of Chemical Sciences and Engineering
Career
■ CareerCareer
- Jun. 2016 - Present
Hokkaido University, Institute for Catalysis, Assistant Professor - May 2014 - Jun. 2016
Hokkaido University, Postdoctoral Fellow - Mar. 2012 - Oct. 2012
University of Queensland, Australia, Teaching Assistant - Jan. 2011 - Apr. 2011
University of Queensland, Australia, Research Assistant - Sep. 2006 - Dec. 2009
Reliance Industries Limited, India, Process Engineer
Research activity information
■ Awards- Dec. 2023, National Institute of Technology, Raipur, India, Young Achiever Alumnus Award
Abhijit Shrotri - May 2023, 一般社団法人化学情報協会, JAICI賞
SHROTRI Abhijit - Mar. 2023, Catalysis Society of Japan, Catalysis Society Encouragement Award
二酸化炭素およびバイオマス資源活用のための触媒開発
Abhijit Shrotri - Apr. 2022, Catalysis Society of Japan, Best Presentation Award at the 129th Catalysis Symposium
Hydrogenation of CO2 over oxygen vacant sites in Co-doped ZrO2 catalysts
Abhijit Shrotri - Jun. 2021, Japan Association for Chemical Innovation, The 10th New Chemical Technology Research Encouragement Award
結晶性セルロースの直接加水分解を可能にするカーボン触媒の開発
Abhijit shrotri - Jan. 2017, 7th Asian Pacific Congress on Catalysis, Best Oral Presentation Award
Abhijit Shrotri
- One‐Pot Production of Succinic Acid from Tartaric Acid in Water by Supported Rhenium Catalyst
Daniele Padovan; Kazufumi Kohno; Abhijit Shrotri; Atsushi Fukuoka
ChemCatChem, Wiley, 31 May 2025
Scientific journal, Abstract
The formation of dicarboxylic acid from biomass waste is an important topic for the sustainable production of polymers. Rhenium‐catalyzed deoxydehydration (DODH) of aldaric acid to enedioic acid, followed by hydrogenation (HG), is one of the possible routes to form carboxylic acids. However, reliance on organic solvents and noble metals poses a risk to the sustainability of the process. Herein, we demonstrated for the first time the conversion of tartaric acid (TA) to succinic acid (SA) in water in a one‐pot reaction using heterogeneous ReOx/activated carbon (ReOx/AC) without the addition of noble metals, in which ReOx/AC catalyzes both DODH and HG. At TA conversion >99%, SA yield of 76% is obtained. TA concentrations as high as 10 wt.% could be employed, and unprecedentedly high turnover number (TON, 144) and SA productivity (0.24 gSA·gcatalyst−1·h−1) are obtained. The use of water facilitates the HG of fumaric acid intermediate, showing a 17‐fold faster HG step compared to conventional dioxane. The catalyst was reused over four reaction cycles. - Molecular Moieties Having Pyrene and Carboxylic Acid for the Hydrolysis of Cellulose
Nazmul Hasan MD Dostagir; Yusuke Suzuki; Zhiyi Song; Hirokazu Kobayashi; Abhijit Shrotri; Atsushi Fukuoka
ACS Omega, 10, 22, 23058, 23063, American Chemical Society (ACS), 31 May 2025, [Peer-reviewed], [Corresponding author]
Scientific journal - Strong Metal Support Interaction in Ru/V2O3 Mitigates Reactant Induced Poisoning in Succinic Acid Hydrogenation
Yayati Naresh Palai; Eti Mahal; Biswarup Pathak; Atsushi Fukuoka; Abhijit Shrotri
ChemCatChem, Wiley, 28 Apr. 2025, [Peer-reviewed], [Last author, Corresponding author]
Scientific journal, Abstract
Hydrogenation of carboxylic acids to lactones is an important reaction. However, strong adsorption of carboxylic acid on the catalyst causes poisoning of the active site and demands harsher reaction conditions and organic solvents. In this study, we demonstrate that strong metal support interaction (SMSI) and hydrogen spillover on Ru/V2O3 can counter such a poisoning effect. The catalyst with SMSI was able to hydrogenate succinic acid to γ‐butyrolactone (GBL) in 77% yield in the presence of water at mild conditions of 150 °C. The H2‐D2 exchange experiment showed that for Ru/V2O3 catalysts reduced at higher temperatures, SMSI created a barrier between the substrate and the hydrogen dissociation sites. Moreover, the spillover of dissociated H2 onto the V2O3 surface was found to enhance catalytic activity. Thermodynamic calculations using density functional theory showed that the transfer of a hydride from Ru and a proton from V2O3 to the substrate has a lower reaction‐free energy compared to the transfer of two hydrogen atoms from the ruthenium surface. Additionally, the easier desorption of product from the Ru/V2O3 surface increased catalytic activity. We show that SMSI can be used as an effective strategy to mitigate the poisoning of metal sites during catalytic hydrogenation of carboxylic acids. - Site-Selective Zn-Metalation in Poly-Triphenyl Amine-based Porous Organic Polymer for Solid–Gas Phase CO2 Photoreduction
Ankita Boruah; Bishal Boro; Ratul Paul; Chia-Che Chang; Srayee Mandal; Abhijit Shrotri; Chih-Wen Pao; Binh Khanh Mai; John Mondal
ACS Applied Materials & Interfaces, 16, 27, 34437, 34449, American Chemical Society (ACS), 28 Jun. 2024, [Peer-reviewed]
Scientific journal - Unraveling the CO Oxidation Mechanism over Highly Dispersed Pt Single Atom on Anatase TiO2 (101)
Celine Tesvara; Md Raian Yousuf; Malik Albrahim; Diego Troya; Abhijit Shrotri; Eli Stavitski; Ayman M. Karim; Philippe Sautet
ACS Catalysis, 14, 10, 7562, 7575, American Chemical Society (ACS), 01 May 2024, [Peer-reviewed]
Scientific journal - Mitigating the Poisoning Effect of Formate during CO2 Hydrogenation to Methanol over Co-Containing Dual-Atom Oxide Catalysts
Nazmul Hasan MD Dostagir; Carlo Robert Tomuschat; Kai Oshiro; Min Gao; Jun-ya Hasegawa; Atsushi Fukuoka; Abhijit Shrotri
JACS Au, American Chemical Society (ACS), 02 Feb. 2024
Scientific journal - Unlocking the Potential of 5-Hydroxy-2(5H)-furanone as a Platform for Bio-Based Four Carbon Chemicals
Yayati Naresh Palai; Atsushi Fukuoka; Abhijit Shrotri
ACS Catalysis, 14, 4, 2545, 2551, American Chemical Society (ACS), 02 Feb. 2024
Scientific journal - Reaction Pathways for Synthesis of Four Carbon Chemicals from Sugars and Sugar Derived Platform Chemicals
Yayati Naresh Palai; Atsushi Fukuoka; Abhijit Shrotri
ChemCatChem, 22 Nov. 2023, [Peer-reviewed]
Scientific journal - Induction of plant disease resistance by mixed oligosaccharide elicitors prepared from plant cell wall and crustacean shells
Sreynich Pring; Hiroaki Kato; Sayaka Imano; Maurizio Camagna; Aiko Tanaka; Hisashi Kimoto; Pengru Chen; Abhijit Shrotri; Hirokazu Kobayashi; Atsushi Fukuoka; Makoto Saito; Takamasa Suzuki; Ryohei Terauchi; Ikuo Sato; Sotaro Chiba; Daigo Takemoto
Physiologia Plantarum, 175, 5, e14052, Wiley, Oct. 2023, [Peer-reviewed]
English, Scientific journal, Abstract
Basal plant immune responses are activated by the recognition of conserved microbe‐associated molecular patterns (MAMPs), or breakdown molecules released from the plants after damage by pathogen penetration, so‐called damage‐associated molecular patterns (DAMPs). While chitin‐oligosaccharide (CHOS), a primary component of fungal cell walls, is most known as MAMP, plant cell wall‐derived oligosaccharides, cello‐oligosaccharides (COS) from cellulose, and xylo‐oligosaccharide (XOS) from hemicellulose are representative DAMPs. In this study, elicitor activities of COS prepared from cotton linters, XOS prepared from corn cobs, and chitin‐oligosaccharide (CHOS) from crustacean shells were comparatively investigated. In Arabidopsis, COS, XOS, or CHOS treatment triggered typical defense responses such as reactive oxygen species (ROS) production, phosphorylation of MAP kinases, callose deposition, and activation of the defense‐related transcription factor WRKY33 promoter. When COS, XOS, and CHOS were used at concentrations with similar activity in inducing ROS production and callose depositions, CHOS was particularly potent in activating the MAPK kinases and WRKY33 promoters. Among the COS and XOS with different degrees of polymerization, cellotriose and xylotetraose showed the highest activity for the activation of WRKY33 promoter. Gene ontology enrichment analysis of RNAseq data revealed that simultaneous treatment of COS, XOS, and CHOS (oligo‐mix) effectively activates plant disease resistance. In practice, treatment with the oligo‐mix enhanced the resistance of tomato to powdery mildew, but plant growth was not inhibited but rather tended to be promoted, providing evidence that treatment with the oligo‐mix has beneficial effects on improving disease resistance in plants, making them a promising class of compounds for practical application. - Size‐Dependent Dispersion of Rhodium Clusters into Isolated Single Atoms at Low Temperature and the Consequences for CO Oxidation Activity
Malik A. Albrahim; Abhijit Shrotri; Raymond R. Unocic; Adam S. Hoffman; Simon R. Bare; Ayman M. Karim
Angewandte Chemie International Edition, 62, 44, Wiley, 19 Sep. 2023
Scientific journal, Abstract
Understanding the dynamic structural evolution of supported metal clusters under reaction conditions is crucial to develop structure reactivity relations. Here, we followed the structure of different size Rh clusters supported on Al2O3 using in situ/operando spectroscopy and ex situ aberration‐corrected electron microscopy. We report a dynamic evolution of rhodium clusters into thermally stable isolated single atoms upon exposure to oxygen and during CO oxidation. Rh clusters partially disperse into single atoms at room temperature and the extent of dispersion increases as the Rh size decreases and as the reaction temperature increases. A strong correlation is found between the extent of dispersion and the CO oxidation kinetics. More importantly, dispersing Rh clusters into single atoms increases the activity at room temperature by more than two orders of magnitude due to the much lower activation energy on single atoms (40 vs. 130 kJ/mol). This work demonstrates that the structure and reactivity of small Rh clusters are very sensitive to the reaction environment. - Separation of CO2 adsorption and H2 dissociation site in Co and In doped ZrO2 catalyst enhances methanol selectivity in CO2 hydrogenation
Nazmul Hasan MD Dostagir; Carlo Robert Tomuschat; Atsushi Fukuoka; Abhijit Shrotri
29 Aug. 2023 - Mordenite-stabilised rhenium catalyst for partial oxidation of methane to syngas
Lingcong Li; Abhijit Shrotri; Kazuya Kato; Atsushi Fukuoka; Hirokazu Kobayashi
Catalysis Science & Technology, in press, Jul. 2023, [Peer-reviewed]
English, Scientific journal, 裏表紙に採択 - Aqueous phase conversion of CO2 into acetic acid over thermally transformed MIL-88B catalyst
Waqar Ahmad; Paramita Koley; Swarit Dwivedi; Rajan Lakshman; Yun Kyung Shin; Adri C. T. van Duin; Abhijit Shrotri; Akshat Tanksale
Nature Communications, 17 May 2023, [Peer-reviewed]
Scientific journal - Solvent-Assisted Adsorption of Cellulose on a Carbon Catalyst as a Pretreatment Method for Hydrolysis to Glucose
Abhijit Shrotri; Kiko Eguchi; Lina Mahardiani; Hirokazu Kobayashi; Masakuni Yamashita; Hiroshi Yagita; Atsushi Fukuoka
Chemistry, 5, 1, 381, 392, MDPI AG, 24 Feb. 2023, [Lead author, Corresponding author]
Scientific journal, Cellulose hydrolysis to glucose using a heterogeneous catalyst is a necessary step in producing bio-based chemicals and polymers. The requirement for energy-intensive pretreatments, such as ball milling, to increase the reactivity of cellulose is one of the major issues in this area. Here, we show that by using solvent-assisted adsorption as a pretreatment step, cellulose can be adsorbed on the surface of a carbon catalyst. For adsorption pretreatment, phosphoric acid (H3PO4) performed better than other solvents such as sulfuric acid (H2SO4), tetrabutylammonium fluoride/dimethyl sulfoxide (TBAF/DMSO) and 1-butyl-3-methylimidazolium chloride ([BMMI]Cl). Hydrolysis after the adsorption of cellulose and the removal of H3PO4 produced a 73% yield of glucose. Partial hydrolysis of cellulose in H3PO4 before adsorption increased the final glucose yield. The glucose yield was proportional to the number of weakly acidic functional groups on the carbon catalyst, indicating the reaction was heterogeneously catalyzed. In a preliminary lab-scale life-cycle analysis (LCA), greenhouse gas (GHG) emissions per kg of glucose produced through the hydrolysis of cellulose were calculated. The H3PO4-assisted adsorption notably reduces GHG emissions compared to the previously reported ball milling pretreatment. - Redox Behavior of In−O−Ti Interface for Selective Hydrogenation of CO 2 to CO in Doped In−TiO 2 Catalyst
Nazmul H. Md. Dostagir; Atsushi Fukuoka; Abhijit Shrotri
ChemCatChem, 15, 3, e202201348, Wiley, 16 Jan. 2023, [Last author, Corresponding author]
Scientific journal - Engineering the Charge Density on an In2.77S4/Porous Organic Polymer Hybrid Photocatalyst for CO2-to-Ethylene Conversion Reaction
Risov Das; Ratul Paul; Arko Parui; Abhijit Shrotri; Cesare Atzori; Kirill A. Lomachenko; Abhishek Kumar Singh; John Mondal; Sebastian C. Peter
Journal of the American Chemical Society, 145, 1, 422, 435, American Chemical Society (ACS), 20 Dec. 2022
Scientific journal - Catalytic Hydrogenation of Biomass‐Derived Furoic Acid to Tetrahydrofuroic Acid Derivatives over Pd/CoO x Catalyst in Water
Bhanu Priya; Ankit Kumar; SK Nazmul Hasan Md Dostagir; Abhijit Shrotri; Sanjay Kumar Singh
ChemCatChem, 14, 16, e202200590, Wiley, 20 Jul. 2022
Scientific journal - Electrocatalytic water oxidation performance in an extended porous organic framework with a covalent alliance of distinct Ru sites
Bishal Boro; Mrinal K. Adak; Sohag Biswas; Chitra Sarkar; Yogendra Nailwal; Abhijit Shrotri; Biswarup Chakraborty; Bryan M. Wong; John Mondal
Nanoscale, Royal Society of Chemistry ({RSC}), May 2022, [Peer-reviewed]
Scientific journal - Selective Oxidation of Furfural to Succinic Acid over Lewis Acidic Sn-Beta
Yayati Naresh Palai; Abhijit Shrotri; Atsushi Fukuoka
ACS Catalysis, 12, 6, 3534, 3542, American Chemical Society (ACS), 18 Mar. 2022, [Peer-reviewed], [Corresponding author]
Scientific journal - Dimethoxymethane production via CO2 hydrogenation in methanol over novel Ru based hierarchical BEA
Abhijit Shrotri
Journal of Energy Chemistry, 66, 181, 189, Mar. 2022, [Peer-reviewed]
Scientific journal - Co Single Atoms in ZrO2 with Inherent Oxygen Vacancies for Selective Hydrogenation of CO2 to CO
Abhijit Shrotri
ACS Catalysis, 11, 15, 9450, 9461, 06 Aug. 2021, [Peer-reviewed], [Last author, Corresponding author]
Scientific journal - Synthesis of cello-oligosaccharides by depolymerization of cellulose: A review
Pengru Chen; Abhijit Shrotri; Atsushi Fukuoka
Applied Catalysis A: General, 621, 118177, 118177, Elsevier BV, Jul. 2021, [Peer-reviewed], [Corresponding author]
Scientific journal - Reduction and Agglomeration of Supported Metal Clusters Induced by High-Flux X-ray Absorption Spectroscopy Measurements
Malik Albrahim; Coogan Thompson; Denis Leshchev; Abhijit Shrotri; Raymond R. Unocic; Jiyun Hong; Adam S. Hoffman; Michael J. Meloni; Ron C. Runnebaum; Simon R. Bare; Eli Stavitski; Ayman M. Karim
The Journal of Physical Chemistry C, 125, 20, 11048, 11057, American Chemical Society ({ACS}), 27 May 2021, [Peer-reviewed]
Scientific journal - Partial Oxidation of Methane to Syngas via Formate Intermediate Found for a Ruthenium–Rhenium Bimetallic Catalyst
Lingcong Li; Nazmul H. MD Dostagir; Abhijit Shrotri; Atsushi Fukuoka; Hirokazu Kobayashi
ACS Catalysis, 11, 7, 3782, 3789, American Chemical Society (ACS), 02 Apr. 2021, [Peer-reviewed]
Scientific journal - Silica supported Sn catalysts with tetrahedral Sn sites for selective isomerization of glucose to fructose
Yayati Naresh Palai; Abhijit Shrotri; Miyuki Asakawa; Atsushi Fukuoka
Catalysis Today, 365, 241, 248, Elsevier BV, Apr. 2021, [Peer-reviewed], [Corresponding author]
Scientific journal - Taming the butterfly effect: modulating catalyst nanostructures for better selectivity control of the catalytic hydrogenation of biomass-derived furan platform chemicals
Rengui Weng; Xuebin Lu; Na Ji; Atsushi Fukuoka; Abhijit Shrotri; Xiaoyun Li; Rui Zhang; Ming Zhang; Jian Xiong; Zhihao Yu
Catalysis Science & Technology, Royal Society of Chemistry ({RSC}), 2021, [Peer-reviewed]
Scientific journal - Rh promoted In2O3 as a highly active catalyst for CO2 hydrogenation to methanol
Nazmul Hasan MD Dostagir; Coogan Thompson; Hirokazu Kobayashi; Ayman M. Karim; Atsushi Fukuoka; Abhijit Shrotri
Catalysis Science & Technology, 10, 24, 8196, 8202, Royal Society of Chemistry (RSC), Oct. 2020, [Peer-reviewed], [Last author, Corresponding author]
Scientific journal,Atomically dispersed Rh promoted the activity of In2O3 for methanol formation from CO2, inducing strong CO2 adsorption and enhanced formate formation.
- Thermocatalytic Hydrodeoxygenation and Depolymerization of Waste Lignin to Oxygenates and Biofuels in a Continuous Flow Reactor at Atmospheric Pressure
Swathi Mukundan; Daria Boffito; Abhijit Shrotri; Luqman Atanda; Jorge Beltramini; Gregory Patience
ACS Sustainable Chemistry & Engineering, 8, 35, 13195, 13205, American Chemical Society ({ACS}), 08 Sep. 2020, [Peer-reviewed]
Scientific journal - Unraveling the hydrolysis of β-1,4-glycosidic bonds in cello-oligosaccharides over carbon catalysts
Pengru Chen; Abhijit Shrotri; Atsushi Fukuoka
Catalysis Science & Technology, 10, 14, 4593, 4601, Jun. 2020, [Peer-reviewed], [Corresponding author]
Scientific journal - Solvent basicity controlled deformylation for the formation of furfural from glucose and fructose
Miyuki Asakawa; Abhijit Shrotri; Hirokazu Kobayashi; Atsushi Fukuoka
Green Chemistry, 21, 22, 6146, 6153, Royal Society of Chemistry ({RSC}), Oct. 2019, [Peer-reviewed], [Corresponding author]
Scientific journal,Furfural was synthesized from hexose sugars instead of 5-HMF by using polar aprotic solvents with very low basicity.
- Structure and activity of activated carbon functionalized with maleic anhydride by diels-alder reaction
Abhijit Shrotri
Catalysis Today, 357, 409, 415, Elsevier BV, Aug. 2019, [Peer-reviewed]
English, Scientific journal - Soluble Cello‐Oligosaccharides Produced by Carbon‐Catalyzed Hydrolysis of Cellulose
Pengru Chen; Abhijit Shrotri; Atsushi Fukuoka
ChemSusChem, 12, 12, 2576, 2580, Wiley, 21 Jun. 2019, [Peer-reviewed]
Scientific journal - Selective Catalysis for Room-Temperature Hydrogenation of Biomass-Derived Compounds over Supported NiPd Catalysts in Water
SK Nazmul Hasan MD Dostagir; Mahendra Kumar Awasthi; Ankit Kumar; Kavita Gupta; Silke Behrens; Abhijit Shrotri; Sanjay Kumar Singh
ACS Sustainable Chemistry & Engineering, 7, 10, 9352, 9359, American Chemical Society ({ACS}), 20 May 2019, [Peer-reviewed]
Scientific journal - Interface Engineering of Graphene-Supported Cu Nanoparticles Encapsulated by Mesoporous Silica for Size-Dependent Catalytic Oxidative Coupling of Aromatic Amines
Chitra Sarkar; Saikiran Pendem; Abhijit Shrotri; Duy Quang Dao; Phuong Pham Thi Mai; Tue Nguyen Ngoc; Dhanunjaya Rao Chandaka; Tumula Venkateshwar Rao; Quang Thang Trinh; Matthew P. Sherburne; John Mondal
ACS Applied Materials & Interfaces, 11, 12, 11722, 11735, American Chemical Society ({ACS}), 27 Mar. 2019, [Peer-reviewed]
Scientific journal - Cellulose Depolymerization over Heterogeneous Catalysts
Abhijit Shrotri; Hirokazu Kobayashi; Atsushi Fukuoka
Accounts of Chemical Research, 51, 3, 761, 768, American Chemical Society, 20 Mar. 2018, [Peer-reviewed], [Lead author]
English, Scientific journal - Unraveling the structural properties and reactivity trends of Cu–Ni bimetallic nanoalloy catalysts for biomass-derived levulinic acid hydrogenation
Saikiran Pendem; Indranil Mondal; Abhijit Shrotri; Bolla Srinivasa Rao; Nakka Lingaiah; John Mondal
Sustainable Energy & Fuels, Royal Society of Chemistry ({RSC}), 2018, [Peer-reviewed]
Scientific journal - Cellulose Hydrolysis Using Oxidized Carbon Catalyst in a Plug-Flow Slurry Process
Abhijit Shrotri; Hirokazu Kobayashi; Hiroyuki Kaiki; Mizuho Yabushita; Atsushi Fukuoka
INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH, 56, 49, 14471, 14478, Dec. 2017, [Peer-reviewed], [Lead author]
English, Scientific journal - Recent Developments in the Use of Porous Carbon Materials for Cellulose Conversion
Abhijit Shrotri
Nanoporous Catalysts for Biomass Conversion, 79, 98, John Wiley & Sons, Ltd, 22 Sep. 2017, [Peer-reviewed], [Lead author]
In book - Catalytic Conversion of Structural Carbohydrates and Lignin to Chemicals
Abhijit Shrotri; Hirokazu Kobayashi; Atsushi Fukuoka
Advances in Catalysis, 60, 1, 57, Academic Press Inc., 2017, [Peer-reviewed], [Lead author]
English, In book - Air Oxidation of Activated Carbon to Synthesize a Biomimetic Catalyst for Hydrolysis of Cellulose
Abhijit Shrotri; Hirokazu Kobayashi; Atsushi Fukuoka
CHEMSUSCHEM, 9, 11, 1299, 1303, Jun. 2016, [Peer-reviewed], [Lead author]
English, Scientific journal - Mechanochemical Synthesis of a Carboxylated Carbon Catalyst and Its Application in Cellulose Hydrolysis
Abhijit Shrotri; Hirokazu Kobayashi; Atsushi Fukuoka
CHEMCATCHEM, 8, 6, 1059, 1064, Mar. 2016, [Peer-reviewed], [Lead author]
English, Scientific journal - High yield conversion of cellulosic biomass into 5-hydroxymethylfurfural and a study of the reaction kinetics of cellulose to HMF conversion in a biphasic system
Luqman Atanda; Muxina Konarova; Qing Ma; Swathi Mukundan; Abhijit Shrotri; Jorge Beltramini
CATALYSIS SCIENCE & TECHNOLOGY, 6, 16, 6257, 6266, 2016, [Peer-reviewed]
English, Scientific journal - Hydrolysis of woody biomass by a biomass-derived reusable heterogeneous catalyst
Hirokazu Kobayashi; Hiroyuki Kaiki; Abhijit Shrotri; Kota Techikawara; Atsushi Fukuoka
CHEMICAL SCIENCE, 7, 1, 692, 696, 2016, [Peer-reviewed]
English, Scientific journal - Direct Production of 5-Hydroxymethylfurfural via Catalytic Conversion of Simple and Complex Sugars over Phosphated TiO2
Luqman Atanda; Abhijit Shrotri; Swathi Mukundan; Qing Ma; Muxina Konarova; Jorge Beltramini
CHEMSUSCHEM, 8, 17, 2907, 2916, Sep. 2015, [Peer-reviewed]
English, Scientific journal - Sulfuric Acid-Catalyzed Dehydration of Sorbitol: Mechanistic Study on Preferential Formation of 1,4-Sorbitan
Mizuho Yabushita; Hirokazu Kobayashi; Abhijit Shrotri; Kenji Hara; Shogo Ito; Atsushi Fukuoka
BULLETIN OF THE CHEMICAL SOCIETY OF JAPAN, 88, 7, 996, 1002, Jul. 2015, [Peer-reviewed]
English, Scientific journal - Catalytic Conversion of Glucose to 5-Hydroxymethyl-furfural with a Phosphated TiO2 Catalyst
Luqman Atanda; Swathi Mukundan; Abhijit Shrotri; Qing Ma; Jorge Beltramini
CHEMCATCHEM, 7, 5, 781, 790, Mar. 2015, [Peer-reviewed]
English, Scientific journal - Catalytic behaviour of TiO2-ZrO2 binary oxide synthesized by sol-gel process for glucose conversion to 5-hydroxymethylfurfural
Luqman Atanda; Adib Silahua; Swathi Mukundan; Abhijit Shrotri; Gilberto Torres-Torres; Jorge Beltramini
RSC ADVANCES, 5, 98, 80346, 80352, 2015, [Peer-reviewed]
English, Scientific journal - Efficient Catalytic Conversion of Cellulose to Platform Chemicals Using Mechanical Treatment
Abhijit Shrotri; Hirokazu Kobayashi; Atsushi Fukuoka
JOURNAL OF THE JAPAN PETROLEUM INSTITUTE, 58, 1, 1, 8, Jan. 2015, [Peer-reviewed], [Lead author]
English - Transfer Hydrogenation of Cellulose-based Oligomers over Carbon-supported Ruthenium Catalyst in a Fixed-bed Reactor
Abhijit Shrotri; Hirokazu Kobayashi; Akshat Tanksale; Atsushi Fukuoka; Jorge Beltramini
CHEMCATCHEM, 6, 5, 1349, 1356, May 2014, [Peer-reviewed], [Lead author]
English, Scientific journal - Stepwise Pore Size Reduction of Ordered Nanoporous Silica Materials at Angstrom Precision
Siddharth Jarnbhrunkar; Meihua Yu; Jie Yang; Jun Zhang; Abhijit Shrotri; Liliana Endo-Munoz; Joel Moreau; Gaoqing Lu; Chengzhong Yu
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 135, 23, 8444, 8447, Jun. 2013, [Peer-reviewed]
English, Scientific journal - Mechanical depolymerisation of acidulated cellulose: understanding the solubility of high molecular weight oligomers
Shrotri, Abhijit; Lambert, Lynette Kay; Tanksale, Akshat; Beltramini, Jorge
Green Chemistry, 15, 10, 2761, 2768, 2013, [Peer-reviewed], [Lead author]
Scientific journal - Conversion of cellulose to polyols over promoted nickel catalysts
Abhijit Shrotri; Akshat Tanksale; Jorge Norberto Beltramini; Hanmant Gurav; Satyanarayana V. Chilukuri
CATALYSIS SCIENCE & TECHNOLOGY, 2, 9, 1852, 1858, 2012, [Peer-reviewed], [Lead author]
English, Scientific journal
- 炭素系触媒モデル分子による結晶セルロースの加水分解
福岡淳; DOSTAGIR Nazmul; 鈴木悠介; 宋志毅; 小林広和; SHROTRI Abhijit, 触媒討論会予稿集(CD-ROM), 134th, 2024
- Advances in Catalysis Vol 60
Abhijit Shrotri; Hirokazu Kobayashi; Atsushi Fukuoka, Catalytic Conversion of Structural Carbohydrates and Lignin to Chemicals
Elsevier, Oct. 2017, [Contributor] - Nanoporous Catalysts for Biomass Conversion
Abhijit Shrotri; Hirokazu Kobayashi; Atsushi Fukuoka, Chapter 4: Recent developments in the use of porous carbon materials for cellulose conversion
Wiley VCH, Sep. 2017, [Contributor]
- Catalytic conversion of cellulose into C6 sugar alcohols
Abhijit Shrotri; Akshat Tanksale; Jorge Beltramini
Bioenergy Australia: Biomass for a Clean Energy Future, Sydney, Australia, Dec. 2010, English, Poster presentation
[International presentation]
■ Affiliated academic society
- Apr. 2019 - Present
American Chemical Society (ACS) - THE SOCIETY OF CHEMICAL ENGINEERS, JAPAN
- CATALYSIS SOCIETY OF JAPAN
- セロオリゴ糖の製造方法
Patent right, 福岡淳; シュロトリアビジツト; 藤田一郎; 齋藤信; 内田博
特願2018-173782, 18 Sep. 2018
特許7191313 - 糖類含有セルロース加水分解物の製造方法
Patent right, 福岡淳; シュロトリアビジット; 小林広和
特願2018-561448, 16 Oct. 2018
特許7141707 - 植物性バイオマスの加水分解方法及び装置
Patent right, 福岡淳; 小林広和; シュロトリアビジット; 藤田一郎
特願2015-247402, 18 Dec. 2015
特開017-109187, 22 Jun. 2017
特許6600911 - 糖類含有セルロース加水分解物の製造方法
Patent right, 福岡淳; シュロトリ アビジット; 小林広和
特願2017-004847, 16 Jan. 2017
特開WO2018-131711, 19 Jul. 2018
