Czech Academy of Sciences, Institute of Inorganic Chemistry
In research, Czech Academy of Sciences, Institute of Inorganic Chemistry stands highest in Physical Sciences (#5,682 of 12,888 worldwide), 2022–2025. Relative to its size it is most specialised in Chemistry and Materials Chemistry — Chemistry is 17.6× its share of world research.
- World rank, 2022–2025
- #10,429 of 28,054 · #5,500 all time
- Rank in Czechia
- #61 of 163
- Research works
- 1.8k ▼ 8% vs 2013–17
- Citations
- 31k 17.1 per fractional work
- Top-10% rate
- 8.4% record average 16.5%
- Open access
- 19% world 28%
What is Czech Academy of Sciences, Institute of Inorganic Chemistry known for in research?
The fields where it stands highest, 2022–2025, ranked among every institution above the floor in each field.
| Field | World rank | Where that sits | Top-10% rate | Works | All time |
|---|---|---|---|---|---|
| Physical SciencesDomain | #5,682 of 12,888 | 7.8% | 110 | #3543 |
Each strip is that field’s whole ranked pool, with the notch where Czech Academy of Sciences, Institute of Inorganic Chemistry sits in it, in the colour of the band that rank falls in. The track under the rate is the rate itself: it carries no world mark, because the world rate differs by field (from about 6% to 21% in this record).
What does Czech Academy of Sciences, Institute of Inorganic Chemistry specialise in?
Where its research is concentrated relative to its size: Chemistry takes 17.6× the share of its output that it takes of world research.
- ChemistryField · 38.4 works18×
- Materials ChemistrySubfield · 26.7 works9.8×
Location quotient, a volume reading rather than an impact one. It surfaces small, lopsided specialities.
Field profile
Location quotient across every field it publishes in: outside the ring is more than an institution of this size would be expected to publish, inside it is less.
Rings at 0.5×, 1× and 2×. Widest outward: Chemistry, 17.6×. Every wedge is a field page.
- Chemistry 17.6×
- Materials Science 7.8×
- Chemical Engineering 6.0×
- Energy 3.7×
- Earth and Planetary Sciences 1.4×
- Pharmacology, Toxicology and Pharmaceutics 1.1×
- Arts and Humanities 0.9×
- Physics and Astronomy 0.8×
- Environmental Science 0.7×
- Biochemistry, Genetics and Molecular Biology 0.7×
- Engineering 0.7×
- Medicine 0.5×
- Health Professions 0.3×
- Dentistry 0.2×
- Agricultural and Biological Sciences 0.2×
- Neuroscience 0.2×
- Computer Science 0.1×
- Decision Sciences 0.1×
- Social Sciences 0.1×
- Business, Management and Accounting 0.1×
- Economics, Econometrics and Finance 0.1×
- Nursing 0.1×
Who are the top researchers at Czech Academy of Sciences, Institute of Inorganic Chemistry?
Ranked on the composite score, Bohumı́r Grüner, S. Heřmánek and В. М. Горбачев lead among researchers whose main affiliation is Czech Academy of Sciences, Institute of Inorganic Chemistry.
- 1 Bohumı́r Grüner Czechia · #285,738 worldwide 124 citations · 27 works
- 2 S. Heřmánek Czechia · #415,540 worldwide 187 citations · 44 works
- 3 В. М. Горбачев Czechia · #418,435 worldwide 128 citations · 22 works
- 4 Dana M. Wagnerová Czechia · #486,219 worldwide 51 citations · 15 works
- 5 J. Plešek Czechia · #570,921 worldwide 163 citations · 53 works
- 6 Tomáš Matys Grygar Czechia · #590,732 worldwide 221 citations · 58 works
- 7 Janka Hradilová Czechia · #610,581 worldwide 64 citations · 18 works
- 8 Jaroslav Nývlt Czechia · #634,382 worldwide 95 citations · 29 works
- 9 Bohumil Štı́br Czechia · #641,055 worldwide 79 citations · 22 works
- 10 Ján Šubrt Czechia · #755,755 worldwide 205 citations · 87 works
Which keywords describe research at Czech Academy of Sciences, Institute of Inorganic Chemistry?
By fractional works in 2022–2025, weighted toward what it does more of than the world: Catalysis, Nanomaterials, Luminescent Materials, Biomedical Applications, Cancer Treatment, Medicinal Chemistry, Biological Applications and Crystal Structure.
- Electrocatalysis
- Frustrated Lewis Pairs
- Water Splitting
- Chemical Sensors
- Hydrogenation
- Optoelectronics
- Two-Dimensional Materials
- Raman Spectroscopy
- Bioremediation
- Crystal Engineering
- Heterogeneous Catalysis
- Coordination Chemistry
- Transition Metal Complexes
- Nanocomposites
- Boron Neutron Capture Therapy
- Drug Design
- Biological Applications
- Medicinal Chemistry
- Luminescent Materials
- Nanomaterials
- Catalysis
- Biomedical Applications
- Cancer Treatment
- Nanoparticles
- Crystal Structure
- Chemical Synthesis
- Carboranes
- Adsorption
- Metal-Organic Frameworks
- Graphene
- Synthesis
- Metal Complexes
- Drug Delivery
- Self-Assembly
- Nanostructures
- Homogeneous Catalysis
- Actinides
- Electronic Properties
- Extraction
- Metal-Free Hydrogen Activation
Size is fractional works in 2022–2025 in the topics tagged with each word; colour is the word's share of this institution's work against its share of the world's. The 40 words are chosen for being large and distinctive. Each links to the topic it comes from most.
All 40 words, with their numbers
- Catalysis21▲ 23×20 topics
- Nanomaterials11▲ 7.4×15 topics
- Biomedical Applications10▲ 6.2×20 topics
- Luminescent Materials9▲ 97×3 topics
- Cancer Treatment9▲ 27×5 topics
- Medicinal Chemistry8▲ 22×10 topics
- Nanoparticles8▲ 4.5×20 topics
- Biological Applications7▲ 76×5 topics
- Crystal Structure7▲ 35×5 topics
- Drug Design7▲ 76×3 topics
- Chemical Synthesis7▲ 61×3 topics
- Boron Neutron Capture Therapy6▲ 538×1 topic
- Carboranes6▲ 538×1 topic
- Nanocomposites6▲ 5.3×10 topics
- Adsorption6▲ 20×6 topics
- Transition Metal Complexes6▲ 46×4 topics
- Metal-Organic Frameworks6▲ 9.6×6 topics
- Coordination Chemistry5▲ 61×4 topics
- Graphene5▲ 5.7×7 topics
- Heterogeneous Catalysis5▲ 21×4 topics
- Synthesis5▲ 9.8×15 topics
- Crystal Engineering5▲ 31×3 topics
- Metal Complexes5▲ 49×4 topics
- Bioremediation5▲ 27×2 topics
- Drug Delivery5▲ 6.1×7 topics
- Raman Spectroscopy4▲ 16×6 topics
- Self-Assembly4▲ 9.9×8 topics
- Two-Dimensional Materials4▲ 14×4 topics
- Nanostructures4▲ 7.8×9 topics
- Optoelectronics4▲ 46×2 topics
- Homogeneous Catalysis4▲ 154×2 topics
- Hydrogenation4▲ 17×5 topics
- Actinides4▲ 55×2 topics
- Chemical Sensors4▲ 12×3 topics
- Electronic Properties4▲ 32×2 topics
- Water Splitting4▲ 7.6×4 topics
- Extraction4▲ 21×3 topics
- Frustrated Lewis Pairs4▲ 246×1 topic
- Metal-Free Hydrogen Activation4▲ 246×1 topic
- Electrocatalysis4▲ 9.5×5 topics
Which research topics does Czech Academy of Sciences, Institute of Inorganic Chemistry publish most on?
By volume in 2022–2025: Boron Compounds in Chemistry, Organoboron and organosilicon chemistry, Radioactive element chemistry and processing and Inorganic Chemistry and Materials.
Area is fractional works; colour is the subfield each topic belongs to.
- 1 Boron Compounds in Chemistry Radiology, Nuclear Medicine and Imaging 6 works
- 2 Organoboron and organosilicon chemistry Organic Chemistry 4 works
- 3 Radioactive element chemistry and processing Inorganic Chemistry 4 works
- 4 Inorganic Chemistry and Materials Inorganic Chemistry 3 works
- 5 Crystallography and molecular interactions Physical and Theoretical Chemistry 2 works
- 6 Advanced Photocatalysis Techniques Renewable Energy, Sustainability and the Environment 2 works
- 7 Cultural Heritage Materials Analysis Archeology 2 works
- 8 Metal-Organic Frameworks: Synthesis and Applications Inorganic Chemistry 2 works
- 9 Nanocluster Synthesis and Applications Materials Chemistry 2 works
- 10 Advanced Nanomaterials in Catalysis Materials Chemistry 2 works
How open and international is its research?
Against the world’s own shares — the tick on each track. Both are shares of its output, so they sit on one scale and can be read against each other as well as against the world.
World: 28% of research is openly available.
World: 19% is written across borders.
How has Czech Academy of Sciences, Institute of Inorganic Chemistry's research output changed?
Output in 2018–2022 was 8% lower than in 2013–2017.
The same series as a ribbon — one cell per year, darker for more. The line above answers how much; this answers when.
Other research institutions in Řež
Research measures only: rankings here say nothing about teaching, admissions or student experience. Comparable institutions and collaboration partners are in the interactive view on the map.