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PXRD with RAMAN SPECTROSCOPY, DSC and IR DATA Chris Gilmore, Gordon Barr and Gordon Cunningham
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Page 1: SERIES RL4000D1 LIGHT TOWER - Light Towers USA - Distributors of

PXRD with RAMAN SPECTROSCOPY, DSC and IR DATA

Chris Gilmore, Gordon Barr and Gordon

Cunningham

Page 2: SERIES RL4000D1 LIGHT TOWER - Light Towers USA - Distributors of

This document was presented at PPXRD -Pharmaceutical Powder X-ray Diffraction Symposium

Sponsored by The International Centre for Diffraction Data

This presentation is provided by the International Centre for Diffraction Data in cooperation with the authors and presenters of the PPXRD symposia for the express purpose of educating the scientific community.

All copyrights for the presentation are retained by the original authors.

The ICDD has received permission from the authors to post this material on our website and make the material available for viewing. Usage is restricted for the purposes of education and scientific research.

ICDD Website - www.icdd.comPPXRD Website – www.icdd.com/ppxrd

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Classifying Data• Statistics/data mining problem: put patterns

(PXRD, spectra) into clusters where each cluster contains patterns which are most similar to each other.

• Not always a unique solution.

• Problems with:

• Data quality.

• Sample quality.

• Data quantity.

• Need for automation, and speed.

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Correlation

• Forget peaks.• Match every data point.• Use correlation coefficients:

• Pearson correlation coefficient (parametric).

• Spearman correlation coefficient (non-parametric).

Page 5: SERIES RL4000D1 LIGHT TOWER - Light Towers USA - Distributors of

Pearson correlation coefficient

( )( )

( ) ( )allpoints

2 2

allpoints allpoints

i i

Pearson

i i

x x y yr

x x y y

− −=

− −

∑ ∑

Page 6: SERIES RL4000D1 LIGHT TOWER - Light Towers USA - Distributors of

Spearman correlation coefficient

( )( )

( ) ( )allpoints

2 2

allpoints allpoints

i i

Spearman

i i

R R S Sr

R R S S

− −=

− −

∑ ∑

Ranks

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Combine them

1 2Pearson Spearmanr w r w r= +Use Fischer transforms:

( ) ( )1 1tanh tanhtanh

2Pearson Spearmanr r

r− −⎛ ⎞+

⎜ ⎟=⎜ ⎟⎝ ⎠

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CorrelationMean correlation coefficient = 0.673

Mean correlation coefficient = 0.771

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Correlation matrix

Page 10: SERIES RL4000D1 LIGHT TOWER - Light Towers USA - Distributors of

Correlation, distance and Similarity

-1 ≤ ρ ≤ 1Larger the value of ρ the closer the match.

0 ≤ d ≤ 1Smaller the value of d the closer the match.

0 ≤ s ≤ 1Larger the value of s the closer the match.

Page 11: SERIES RL4000D1 LIGHT TOWER - Light Towers USA - Distributors of

Correlation, distance and Similarity

correlation matrix, ρij

distance matrix

dij = 0.5(1- ρij)

similarity matrix

sij = 1 – dij/dijmax)

MMDS

Dendrogram

Page 12: SERIES RL4000D1 LIGHT TOWER - Light Towers USA - Distributors of

Example: Phase Transitions in Ammonium Nitrate

Work with • Michael Hermannn (Fraunhofer-

Institut Chemische Technologie)• Karsten Knorr (Bruker AXS, Karlsruhe)See Hermann & Engel Propellants,

Explosives, Pyrotechnics 22, 143-147 (1997).

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Ammonium Nitrate

• 5 phases I – V• Start with a mixture of IV + V that

transforms to IV, II and I.

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Page 15: SERIES RL4000D1 LIGHT TOWER - Light Towers USA - Distributors of

Ammonium Nitrate

• 75 PXRD data sets. • How to visualize and interpret these

data?

Page 16: SERIES RL4000D1 LIGHT TOWER - Light Towers USA - Distributors of

Dendrogram

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Numbering

Page 18: SERIES RL4000D1 LIGHT TOWER - Light Towers USA - Distributors of

Metric Multidimensional Scaling (MMDS)

Each sphere is a single sample

Page 19: SERIES RL4000D1 LIGHT TOWER - Light Towers USA - Distributors of

Metric Multidimensional Scaling

IV + V

IV

II

I

Page 20: SERIES RL4000D1 LIGHT TOWER - Light Towers USA - Distributors of

Most Representative Sample (MRS)

Page 21: SERIES RL4000D1 LIGHT TOWER - Light Towers USA - Distributors of

Simple Quantitative Analysis

• We know the sequence IV + V → IV → II → I

• Take MRS of IV+V, IV, II, I and use in quantitative analysis.

Page 22: SERIES RL4000D1 LIGHT TOWER - Light Towers USA - Distributors of

Simple Quantitative Analysis

IV + V

IV

II

I

53% I + 47% II

56% II + 44% IV

57% IV+V + 43% V

Page 23: SERIES RL4000D1 LIGHT TOWER - Light Towers USA - Distributors of

Parallel Coordinate Plots

• The MMDS (or PCA) calculation gives results in > 3 dimensions, and we merely select the 1st 3 (e.g. the first 3 eigenvectors for each eigenvalue)

• Consider the 6 dimensional coordinates(0.1, 0.2, 0.3, 0.2, 0.0, 0.2) = (x1, x2, x3, x4, x5,

x6)

Page 24: SERIES RL4000D1 LIGHT TOWER - Light Towers USA - Distributors of

x6

x5

x4

x3

x2

x1

0 1.0

Page 25: SERIES RL4000D1 LIGHT TOWER - Light Towers USA - Distributors of

Other Visualization Tools: Parallel Coordinate Plots –

More than 3 Dimensions

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Another View

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Is PXRD the Gold Standard?

Powder X-ray diffraction is usually considered the gold standard in high throughput studies designed to identify polymorphs, salts, co-crystals etc., but other techniques such as Raman and IR spectroscopy, or differential scanning calorimetry (DSC) can have a major role to play also especially with poorly characterised samples.

Page 28: SERIES RL4000D1 LIGHT TOWER - Light Towers USA - Distributors of

Raman Data• Raman spectroscopy is well suited to screening: good

quality spectra can be collected in a few minutes, and sample preparation is straightforward and flexible, although the resulting spectra are not always as distinct as the PXRD equivalent

High-throughput powder diffraction V: the use of Raman spectroscopy with and without X-ray powder diffraction dataBarr, Cunningham, Dong, Gilmore & Kojima J. Appl. Cryst. (2009). 42, 706–714

Page 29: SERIES RL4000D1 LIGHT TOWER - Light Towers USA - Distributors of

carbamazepine

cimetidene

furosemide

mefenamicacid

phenylbutazone

sulfamerazine

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MMDS

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PCA – Be Wary!

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Use 1st Derivative Data

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Dendrogram on Derivative Data

Page 34: SERIES RL4000D1 LIGHT TOWER - Light Towers USA - Distributors of

MMDS on Derivative Data

Page 35: SERIES RL4000D1 LIGHT TOWER - Light Towers USA - Distributors of

How Do You Combine Different Data Types?

• Combined XRPD + Raman instruments now available

• Applying multiple techniques to the same samples gives additional information

• How would we actually combine results from two (or more) such different techniques ?

Page 36: SERIES RL4000D1 LIGHT TOWER - Light Towers USA - Distributors of

Combining Data Types

• Manual weighting:– Give a single weight to each dataset e.g.

Powder 0.8, Raman 0.2– Use Fischer transforms.

• Dynamic weighting:– Automatically calculate optimal weighting

for each entry in each dataset– Unbiased solution that scales the differences

between individual distance matrices

Page 37: SERIES RL4000D1 LIGHT TOWER - Light Towers USA - Distributors of

Dynamic weighting• Dynamic Weighting using INDSCAL:

Independent Scaling of DifferencesCarroll & Chang, (1970) Psychometrica 35, 283-319

• Each data set has a 2-D distance matrix d• Dk is squared (n × n) distance matrix for

dataset ke.g. we have Raman and XRPD data on 20 samples,

so k = 2, n=20.• We want a Group Average Matrix, G, to

optimally describe our data• Specify diagonal weight matrices Wk which can

vary over the k datasets

Page 38: SERIES RL4000D1 LIGHT TOWER - Light Towers USA - Distributors of

Dynamic WeightingMatrices are matched to weighted form of

G by minimising (1)

Where

(a double-centering operation on D), and solve (1) to get best values for G and W

The resulting G matrix is then used as before

Page 39: SERIES RL4000D1 LIGHT TOWER - Light Towers USA - Distributors of

Full profile matching all patterns against all

patterns

n

XRPD Patterns

nxn

correlation matrix

Full profile matching all patterns against all

patterns

n

Raman Patterns

nxn

correlation matrix

nxn

distance datrix

Combine

XRD results

Raman results

Combined results

nxn

distance matrix

nxn

distance matrix

Page 40: SERIES RL4000D1 LIGHT TOWER - Light Towers USA - Distributors of

PXRD + Raman

• Forms 2,3 and 4 of sulfathizole• 48 samples, no mixtures.

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PXRD

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Raman

Page 45: SERIES RL4000D1 LIGHT TOWER - Light Towers USA - Distributors of

Raman and PXRD Averaged

Page 46: SERIES RL4000D1 LIGHT TOWER - Light Towers USA - Distributors of

INDSCAL

Page 47: SERIES RL4000D1 LIGHT TOWER - Light Towers USA - Distributors of

Other Combinations

• Raman + Raman derivative data.• Different data collection

protocols/apparatus on the same samples.• You can include numeric data as a data

type e.g. image analysis data.

Page 48: SERIES RL4000D1 LIGHT TOWER - Light Towers USA - Distributors of

Numeric data – get the distance matrix directly.

12 2

1

m

ij k ik jkk

d w x x=

⎛ ⎞= − ⇒⎜ ⎟⎜ ⎟⎝ ⎠∑ d

Sample 1: 113.431 58.531 155.845 … {x11, x12 , x13…….}

Sample 2: 113.44 58.328 153.602 … {x21, x22 , x23…….}

Sample 3: 117.873 60.117 93.686 … {x31, x32 , x33…….}

Page 49: SERIES RL4000D1 LIGHT TOWER - Light Towers USA - Distributors of

Raman + Derivative

Data

Page 50: SERIES RL4000D1 LIGHT TOWER - Light Towers USA - Distributors of

PXRD, Raman, IR + DSC

16 samples containing 3 forms of sulfathiazole and carbamazepine + mixtures:

• PXRD: Bruker C2 GADDS,• IR: JASCO FT/IR 4100,• DSC: TA instruments Q100.• Raman: Renishaw inVia Reflex

Spectrometer System.

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PXRD, Raman, IR + DSC

• 15 different data sets and combinations!• You need good software to explore all

these options.

Page 52: SERIES RL4000D1 LIGHT TOWER - Light Towers USA - Distributors of
Page 53: SERIES RL4000D1 LIGHT TOWER - Light Towers USA - Distributors of

PXRD + IR + Raman + DSC

Page 54: SERIES RL4000D1 LIGHT TOWER - Light Towers USA - Distributors of

PXRD + IR + Raman + DSC

All carbamazepine form 3 mixtures

All sulfathiazole mixtures

Page 55: SERIES RL4000D1 LIGHT TOWER - Light Towers USA - Distributors of

PXRD + XRF

Lowe-Ma, et al.

Ford Motor Company

Page 56: SERIES RL4000D1 LIGHT TOWER - Light Towers USA - Distributors of

PolySNAP 3

You can do this with PolySNAP3http://www.chem.gla.ac.uk/snap/

PolySNAP_index.htmlSee:Barr, Dong & Gilmore, J. Appl.

Cryst., (2009), 42, 965-974.orUse MATLAB/R/Sage

Page 57: SERIES RL4000D1 LIGHT TOWER - Light Towers USA - Distributors of

In progress

• Missing data.• DSC processing• Non numeric data

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dSNAP: A New Way of Analysing the Results of Cambridge Data

Base Searches

It’s free:

www.chem.gla.ac.uk/snap

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macroSNAP

dSNAP for proteins – watch this space!

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Acknowledgements

• Michael Hermannn (Fraunhofer-Institut Chemische Technologie)

• Karsten Knorr & Arnt Kern (Bruker AXS, Karlsruhe)

• Chris Frampton & Susie Buttar, Pharmorphix