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Small Angle X-ray Scattering (SAXS) Diffractometer

Instrument types

The SAXS instrument provides cutting edge capabilities for probing large lengthscale structures such as polymers, biological macromolecules, meso- and nano-porous materials, and molecular self-assemblies. Background scattering is minimized through the use of a evacuated flight path and vacuum compatible motorized slits.

Designed and constructed by researchers in the MRL X-ray Facility, the SAXS diffractometer first became available to users in fall of 2000. In 2008, the system was upgraded with a high brilliance x-ray micro-source and new optics from XENOCS which resulted in substantial performance enhancement.

As a result of a recent in house development, the SAXS instrument was upgraded with the single crystal/metal hybrid scatterless slits that are practically free of parasitic slit scattering. The total number of of apertures in the collimation system is reduced to two. For most applications, only one set of slits is used, effectively making the instrument a Single Aperture SAXS camera, with a 300% boost in flux at sample position without compromising resolution.

2D SAXS data collected in house. Clockwise from top left:
(1) Silver behenate (3 min exposure)
(2) Ordered mesoporous silica film (60 min exposure)
(3) Microtubule in solution (20 min exposure)
(4) Hydrated chicken leg tendon (60 min exposure)

Features

X-ray Source

XENOCS Genix 50W x-ray microsource, focus size 50 micron

Wavelength

1.54 Å

Monochromator

XENOCS FOX2D multilayer optics for SAXS

Detector

Bruker HI-STAR multiwire area detector, 11 cm dia. active area
1024 x 1024 16 bit image.

Beam Size at Sample

~ 0.8 mm x 0.8 mm

Flux at Sample position (x-ray power: 50kV x 1mA)

~3x107 photons/sec

Source to Sample Distance

1.7 meter, variable by changing flight tubes

Sample to Detector Distance

1.8 meter, variable by changing flight tubes

Q range (typical)

0.0075 – 0.12 (Å-1)

Total instrument length

3.5 meter

X-ray Optics

3 sets of motorized vaccuum slits with newly developed scatterless blades

Flight Paths

Evacuated aluminum pipes

Sample Chamber

In air with motorized x-y-z translations and rotation

User Interface

Bruker SAXS software and SPEC

 

Related Documents (Manuals, Training, etc.):