We studied the growth of metal-ion silicate chemical gardens under Earth gravity (1 g) and microgravity (μg) conditions. Identical sets of reaction chambers from an automated system (the Silicate Garden Habitat or SGHab) were used in both cases. The μg experiment was performed on board the International Space Station (ISS) within a temperature-controlled setup that provided still and video images of the experiment downlinked to the ground. Calcium chloride, manganese chloride, cobalt chloride, and nickel sulfate were used as seed salts in sodium silicate solutions of several concentrations. The formation and growth of osmotic envelopes and microtubes was much slower under μg conditions. In 1 g, buoyancy forces caused tubes to grow upward, w...
Silica gardens are tubular structures that form along the interface of multivalent metal salts and a...
Silica gardens are tubular structures that form along the interface of multivalent metal salts and a...
Chemical gardens are tubular structures that consist of inorganic precipitate membranes formed under...
We studied the growth of metal-ion silicate chemical gardens under Earth gravity (1 g) and micrograv...
We have grown chemical gardens in different sodium silicate solutions from several metal-ion salts-c...
Chemical gardens are inorganic, self-organizing precipitates that form when metal salts are added to...
Chemical gardens are inorganic, self-organizing precipitates that form when metal salts are added to...
Chemical gardens in laboratory chemistries ranging from silicates to polyoxometalates, in applicatio...
We have performed and visualized chemical garden growth experiments directly in situ in an environme...
The authors acknowledge funding from Spanish MINCINN project grant FIS2016-77692-C2-2P along with Eu...
Chemical gardens in laboratory chemistries ranging from silicates to polyoxometalates, in applicatio...
We show that a chemical garden can be developed from an alkaline metal precipitate using a flow-driv...
Silica gardens are extraordinary plant-like structures resulting from the complex interplay of relat...
Silica gardens are extraordinary plant-like structures resulting from the complex interplay of relat...
Silica gardens are extraordinary plant-like structures resulting from the complex interplay of relat...
Silica gardens are tubular structures that form along the interface of multivalent metal salts and a...
Silica gardens are tubular structures that form along the interface of multivalent metal salts and a...
Chemical gardens are tubular structures that consist of inorganic precipitate membranes formed under...
We studied the growth of metal-ion silicate chemical gardens under Earth gravity (1 g) and micrograv...
We have grown chemical gardens in different sodium silicate solutions from several metal-ion salts-c...
Chemical gardens are inorganic, self-organizing precipitates that form when metal salts are added to...
Chemical gardens are inorganic, self-organizing precipitates that form when metal salts are added to...
Chemical gardens in laboratory chemistries ranging from silicates to polyoxometalates, in applicatio...
We have performed and visualized chemical garden growth experiments directly in situ in an environme...
The authors acknowledge funding from Spanish MINCINN project grant FIS2016-77692-C2-2P along with Eu...
Chemical gardens in laboratory chemistries ranging from silicates to polyoxometalates, in applicatio...
We show that a chemical garden can be developed from an alkaline metal precipitate using a flow-driv...
Silica gardens are extraordinary plant-like structures resulting from the complex interplay of relat...
Silica gardens are extraordinary plant-like structures resulting from the complex interplay of relat...
Silica gardens are extraordinary plant-like structures resulting from the complex interplay of relat...
Silica gardens are tubular structures that form along the interface of multivalent metal salts and a...
Silica gardens are tubular structures that form along the interface of multivalent metal salts and a...
Chemical gardens are tubular structures that consist of inorganic precipitate membranes formed under...