‎Results Filter

Showing results 1-40 / 100

Partnering with Cranfield University to nurture fresh growth in agritech

News: Alongside Cranfield University, we announced the first cohort of companies to join our pilot Agritech Partnership Programme (JMAPP).

Explore

COP26 hydrogen tour visits Johnson Matthey in Stockton to learn how the North East is driving hydrogen

News: Business leaders met at Johnson Matthey in Stockton on Monday 25 October to drive the conversation around hydrogen marking the North East ‘stop’ on the Decarbonised Gas Alliance’s (DGA) Hydrogen Roadshow.

Explore

UK Energy Minister visits our Swindon site

News: On Friday 11th May we welcomed Energy Minister Claire Perry to our site in Swindon.

Explore

C=C double bond reduction kit

This kit contains 7 ene reductase (ENE) enzymes for the reduction of C=C double bonds in the presence of an electron withdrawing group (EWG).

Explore

CCS-enabled (blue) hydrogen

Manufacturing CCS-enabled blue hydrogen at scale is an essential early step in reducing global carbon dioxide emissions, enabling the planet to achieve net zero emissions. Our LCH™ technology (using GHR + ATR) delivers the highest process efficiency and lowest LCOH commercially available today.

Explore

06_Selective Catalytic Reduction.pdf

PDF PDF, 3.5 MB
Download

Blue Hydrogen Production with LCH™ Technology

Explore

ENE-107

Ene reductase enzyme for the reduction of C=C double bonds in the presence of an electron withdrawing group

Explore

ENE-102

Ene reductase enzymes for the reduction of C=C double bonds in the presence of an electron withdrawing group

Explore

ENE-103

Ene reductase enzymes for the reduction of C=C double bonds in the presence of an electron withdrawing group

Explore

ENE-105

Ene reductase enzymes for the reduction of C=C double bonds in the presence of an electron withdrawing group

Explore

ENE-101

Ene reductase enzymes for the reduction of C=C double bonds in the presence of an electron withdrawing group.

Explore

ENE-108

Ene reductase enzymes for the reduction of C=C double bonds in the presence of an electron withdrawing group

Explore

ENE-109

Ene reductase enzymes for the reduction of C=C double bonds in the presence of an electron withdrawing group

Explore

Honeywell UOP and Johnson Matthey join forces to cut costs and boost deployment of sustainable fuels

Johnson Matthey (JM) and Honeywell UOP, two global leaders in sustainable technologies, have signed a Memorandum of Understanding (MoU) to offer an end-to-end solution for businesses developing alternative fuels from a wide range of feedstocks including municipal solid waste, residual biomass, biogas, and CO₂ (captured and renewable).

Explore

Special feature - The PGM opportunity.pdf

PDF PDF, 2.5 MB
Download

The PGM opportunity.pdf

PDF PDF, 2.5 MB
Download

Johnson Matthey chosen for H2H Saltend low-carbon hydrogen project

News

Explore

Johnson Matthey and bp to support planned production of carbon negative renewable diesel fuel plant at Strategic Biofuels project in Louisiana

News

Explore

7843_JMP_PGM_Guide_3_v1.pdf

PDF PDF, 3.7 MB
Download

7572_JMP_PGM_Guide_2_v14.pdf

PDF PDF, 6.5 MB
Download

JM-PGM-Guide.pdf

PDF PDF, 6.5 MB
Download

7843_JMP_PGM_Guide_3_v2.pdf

PDF PDF, 3.7 MB
Download

Johnson Matthey and Honeywell partner to advance lower carbon hydrogen solutions

News

Explore

Response to letter from Standard Investments dated 7 January 2025

News

Explore

Cofactor regeneration enzyme kit guide

PDF PDF, 625 KB
Download

Driving pharmaceutical innovation

JM's Vice President Innovator Products and Solutions, Nick Shackley, discusses advanced catalytic activity, combining technologies with collaborations and more.

Explore

JM_Circularity_Whitepaper.pdf

PDF PDF, 2.5 MB
Download

JM_Circularity_Whitepaper.pdf

PDF PDF, 2.5 MB
Download

Sustainability Performance Databook 2025

PDF XLSX, 1.7 MB
Download

Annual Report and Accounts 2021/22

PDF PDF, 7.9 MB
Download

Johnson Matthey HY 2425 results transcript

PDF PDF, 267 KB
Download

Johnson Matthey FY2526 results transcript

PDF PDF, 224 KB
Download

Johnson Matthey Acquires StePac Modified Atmosphere Packaging Business

StePac works closely with growers and distributors of fresh produce to develop, manufacture and supply application-specific modified atmosphere packaging

Explore

Johnson Matthey and Cranfield University collaborating on next generation food packaging

We are developing next generation modified atmosphere packaging to deliver ideal gaseous conditions at the optimum time to prolong the life of fresh produce

Explore

Annual Report and Accounts 2022/23

PDF PDF, 8 MB
Download

ZSM additives

When propylene demand is high, Johnson Matthey’s ZSM-5 based additives are highly selective for cracking low octane gasoline range molecules to C3 and C4 olefins with no increase in coke or C2 and lighter gases.

Explore

PGM Market Report 2026

PDF PDF, 1.2 MB
Download

PGM Market Report May23.pdf

PDF PDF, 2.1 MB
Download