Vacuum Evaporation

Vacuum evaporation is a separation and concentration technique that removes a volatile solvent under reduced pressure, allowing evaporation at temperatures below its normal boiling point. A vacuum lowers the solvent’s vapor pressure requirement, while controlled heating promotes vapor formation; the solvent vapor is then transported away and commonly condensed for collection. In chemistry, this method helps concentrate heat-sensitive solutions, recover solvents, and purify or prepare samples with reduced thermal degradation. It is also used in chemical processing to control solvent removal efficiently, making pressure, temperature, and evaporation rate important factors in reproducible results.

Vacuum Evaporation - Related Videos

Research

JoVE Journal - Engineering

Seedless Growth of Bismuth Nanowire Array via Vacuum Thermal Evaporation

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Cited by 1 •

2015

A protocol for seedless and high yield growth of bismuth nanowire arrays through vacuum thermal evaporation technique is presented.

Education

JoVE Science Education - Chemistry

Rotary Evaporation to Remove Solvent

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2023

Source: Dr. Melanie Pribisko Yen and Grace Tang — California Institute of Technology Rotary evaporation is a technique most commonly used in organic chemistry to remove a solvent from a higher-boiling point compound of interest. The rotary evaporator, or "rotovap", was invented in 1950 by the chemist Lyman C. Craig. The primary use of a rotovap is to dry and purify samples for downstream applications. Its speed and ability to handle large volumes of solvent make rotary evaporation a preferred...

Proper Operation of Vacuum Based Equipment

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2023

Source: Robert M. Rioux, Ajay Sathe & Zhifeng Chen, Pennsylvania State University, University Park, PA Vacuum is required for a number of laboratory procedures. This is most routinely achieved in the laboratory by the use of vacuum pumps. In addition to working at low pressures, vacuum pumps can also be used to enable rapid changing of the atmospheres in a reactor or flask by evacuation and backfilling.

A High Performance Impedance-based Platform for Evaporation Rate Detection

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Cited by 1 •

2016

This paper presents an impedance-based apparatus for evaporation rate detection of solutions. It offers clear advantages over a conventional weight loss approach: a fast response, high-sensitivity detection, a small sample requirement, multiple sample measurements, and easy disassembly for cleaning and reuse purposes.

Making Record-efficiency SnS Solar Cells by Thermal Evaporation and Atomic Layer Deposition

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Cited by 30 •

2015

Tin sulfide (SnS) is a candidate material for Earth-abundant, non-toxic solar cells. Here, we demonstrate the fabrication procedure of the SnS solar cells employing atomic layer deposition, which yields 4.36% certified power conversion efficiency, and thermal evaporation which yields 3.88%.

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