Productivity Rankings, an exclusive service provided by AD Scientific Index, measures and highlights the scientific productivity of researchers based on the i10 index (number of publications with at least 10 citations). This system identifies highly productive scientists across disciplines, institutions, and regions, contributing to the development of evidence-based academic policies and effective incentive mechanisms. The rankings include global, regional, and institutional analyses, along with specialized rankings such as Scientists' Last 6 Years' i10 Index and Universities' i10 Index Rankings 2025. With Premium Membership, you can:
- Gain full access to detailed comparisons and advanced analytics,
- Objectively evaluate your academic productivity,
- Make strategic, data-driven decisions to enhance performance.
* Last 6 Years i10 IndexRankings
Ranking Based On Selection: 1
Catalytic C1 conversion/Heterogeneous catalysis /Zeolite/mesoporous silica and nanocomposite synthesis/Cleaner technology
i-10 Metrics
Total
Last 6 Years
Last 6 Years / Total
86
79
0.919
* Last 6 Years i10 IndexRankings
Ranking Based On Selection: 2
Catalysis
Material synthesis
Waste to Value-added products
i-10 Metrics
Total
Last 6 Years
Last 6 Years / Total
44
37
0.841
* Last 6 Years i10 IndexRankings
Ranking Based On Selection: 3
Advanced Materials
Green Catalysts
i-10 Metrics
Total
Last 6 Years
Last 6 Years / Total
50
32
0.640
* Last 6 Years i10 IndexRankings
Ranking Based On Selection: 4
Polymer nanocomposites
rubber modication
nanomaterials
nanocellulose
i-10 Metrics
Total
Last 6 Years
Last 6 Years / Total
29
28
0.966
* Last 6 Years i10 IndexRankings
Ranking Based On Selection: 5
catalyst
carbon material
heterogeneous reaction
carbon dioxide conversion
methane cracking
i-10 Metrics
Total
Last 6 Years
Last 6 Years / Total
27
27
1.000
* Last 6 Years i10 IndexRankings
Ranking Based On Selection: 6
Energy
Fuel cell
Composites
Natural rubber
i-10 Metrics
Total
Last 6 Years
Last 6 Years / Total
27
27
1.000
* Last 6 Years i10 IndexRankings
Ranking Based On Selection: 7
Natural rubber technology
polymer
optimization for synthesis conditions
i-10 Metrics
Total
Last 6 Years
Last 6 Years / Total
17
11
0.647
Metta Chareonpanich
Kasetsart University
Bangkok, Thailand
i-10 Metrics
Total
Last 6 Years
Last 6 Years / Total
86
79
0.919
Catalytic C1 conversion/Heterogeneous catalysis /Zeolite/mesoporous silica and nanocomposite synthesis/Cleaner technology
Anusorn Seubsai
Kasetsart University
Bangkok, Thailand
i-10 Metrics
Total
Last 6 Years
Last 6 Years / Total
44
37
0.841
Catalysis
Material synthesis
Waste to Value-added products
Paisan Kongkachuichay
Kasetsart University
Bangkok, Thailand
i-10 Metrics
Total
Last 6 Years
Last 6 Years / Total
50
32
0.640
Advanced Materials
Green Catalysts
Peerapan Dittanet
Kasetsart University
Bangkok, Thailand
i-10 Metrics
Total
Last 6 Years
Last 6 Years / Total
29
28
0.966
Polymer nanocomposites
rubber modication
nanomaterials
nanocellulose
Waleeporn Donphai
Kasetsart University
Bangkok, Thailand
i-10 Metrics
Total
Last 6 Years
Last 6 Years / Total
27
27
1.000
catalyst
carbon material
heterogeneous reaction
carbon dioxide conversion
methane cracking
Paweena Prapainainar
Kasetsart University
Bangkok, Thailand
i-10 Metrics
Total
Last 6 Years
Last 6 Years / Total
27
27
1.000
Energy
Fuel cell
Composites
Natural rubber
Nanthiya Hansupalak
Kasetsart University
Bangkok, Thailand
i-10 Metrics
Total
Last 6 Years
Last 6 Years / Total
17
11
0.647
Natural rubber technology
polymer
optimization for synthesis conditions