We use a special way to make things. 
Scientists use a special process to make new things. 
Scientists use a special way to make useful liquids. This way is called hydroformylation. 
To make this work, scientists use high pressure and heat. They mix alkenes with gases called carbon monoxide and hydrogen. A metal helps this change happen. This metal is a catalyst, which is a helper that speeds up a reaction. Most of the time, the metal dissolves in the liquid. This is called homogeneous catalysis.
Otto Roelen discovered this way in 1938. He found that cobalt works well as a catalyst. Today, many factories use rhodium instead. Rhodium is a metal that is much more expensive than cobalt. 
Hydroformylation is a very important industrial process used to create aldehydes. 
The way this process works involves a specific chemical change. Scientists take a chemical called an alkene and add a formyl group and a hydrogen atom to it. This happens at a carbon-carbon double bond. To make this happen, they use high pressure and heat. Usually, the pressure is between 10 and 100 atmospheres. The temperature stays between 40 and 200 degrees Celsius. A metal catalyst is needed to help the reaction move forward.
The history of this discovery began with a German chemist named Otto Roelen. He discovered the process in 1938 while studying the Fischer-Tropsch process. Roelen found that cobalt was an excellent catalyst for this work. Later, in the 1960s, Richard F. Heck and David Breslow explained how the cobalt catalyst actually worked. By 1968, scientists found that rhodium-based catalysts were highly active too. Since the 1970s, most industrial work has used rhodium instead of cobalt. 
There are many different ways to run this process in factories. The BASF-oxo process uses cobalt and works at a pressure of about 30 MPa. The Exxon process also uses cobalt and works at temperatures between 160 and 180 degrees Celsius. Another method is the Shell process, which uses cobalt complexes with special ligands. The Union Carbide process is a low-pressure method that uses a rhodium catalyst. In 1995, the production capacity for this process reached 6.6 tons.
One big goal in this science is controlling the shape of the molecules. Scientists want to choose between making "normal" or "iso" products. The normal products have straight chains, while the iso products are branched. Straight chains are often more useful for making things like soap. Researchers use special parts called ligands to help favor the straight chains. This helps them get exactly the chemical they need for their work.
Hydroformylation, often called oxo synthesis or the oxo process, is a vital industrial chemical reaction. 
The chemical mechanism involves adding a formyl group and a hydrogen atom to a carbon-carbon double bond.
To understand the molecular steps, we can look at the cobalt-catalyzed cycle.
A major challenge in hydroformylation is controlling selectivity between "normal" and "iso" products.
History shows how this field has evolved through discovery and refinement. German chemist Otto Roelen discovered the process in 1938. He was investigating the Fischer–Tropsch process when he noticed ethylene produced aldehydes and diethylketone. Roelen identified that cobalt catalysts were excellent for this reaction. In the 1960s, Richard F. Heck and David Breslow elucidated the specific cobalt-catalyzed mechanism. By 1968, researchers reported highly active rhodium-based catalysts. Since the 1970s, most industrial hydroformylation has relied on these rhodium catalysts because they are more active than cobalt.
Various industrial processes have been developed to handle different types of molecules.
The Ruhrchemie/Rhône-Poulène process is a highly efficient example of modern chemical engineering.
🖼️ Images & Media (8)
More to explore
✨ What else?
Related topics you might enjoy
🔬 Go deeper
More advanced topics to explore
What is Nepedia?
A free, ad-free encyclopedia for children. Every article is written at five reading levels, so the same page works for a five-year-old and a fifteen-year-old — use the level switcher above to see this one change. No account needed to read.