Tech
Microsoft scores win against Office 365 credential thieves | Computer Weekly

Investigators from Microsoft’s Digital Crimes Unit (DCU) have disrupted the network behind the dangerous RaccoonO365 infostealer malware that targeted the usernames and credentials of Office 365 users after being granted a court order in the Southern District of New York.
The operation saw a total of 338 websites linked to the popular malware seized and its technical infrastructure disrupted, severing RaccoonO365 users’ access to their victims.
RaccoonO365 – which was tracked in Microsoft’s threat actor matrix as Storm-2246 – was a relatively unsophisticated, subscription-based phishing kit that exploited Microsoft’s own branding to make its fake email, attachments and websites seem realistic enough to trick victims into interacting with them.
Microsoft’s Stephen Masada, DCU assistant general counsel, said the case showed that effective cyber criminals did not need to be particularly sophisticated to have an impact: “Since July 2024, RaccoonO365’s kits have been used to steal at least 5,000 Microsoft credentials from 94 countries.
“While not all stolen information results in compromised networks or fraud due to the variety of security features employed to remediate threats, these numbers underscore the scale of the threat and how social engineering remains a go-to tactic for cyber criminals.
“More broadly, the rapid development, marketing and accessibility of services such as RaccoonO365 indicate that we are entering a troubling new phase of cyber crime where scams and threats are likely to multiply exponentially.”
The DCU operation appears to have come at the right time as in the past 12 months, Microsoft said RaccoonO365 had undergone a rapid technical evolution with regular upgrades to meet rising demand.
Among other things, users were able to input 9,000 target email addresses every day, and could also “benefit” from on-board features that enabled them to circumvent multi-factor authentication (MFA) safeguards and establish persistent access on their victims’ computers.
In the past few months, RaccoonO365’s operators also started advertising an AI service that supposedly enabled users to scale their operations and improve the effectiveness of their attacks.
Leadership identified
At the same time, the DCU has named a Nigerian national, Joshua Ogundipe, as the leader of the enterprise behind RaccoonO365. He was identified following an operational security lapse in which the gang accidentally revealed a secret cryptocurrency wallet, which the DCU said greatly helped with attribution.
It accused Ogundipe and associates of selling their services via Telegram to their customers, estimated to be around 100 to 200 subscriptions based on the group’s membership of 845 (as of 25 August) – although this is likely an underestimate.
According to Cloudflare, which worked with the DCU throughout the takedown, access to the RaccoonO365 phishing kit was sold on a subscription basis, with 30-day plans available for $355 and 90-day plans for $999, payable in various forms of cryptocurrency.
Alongside his associates, Ogundipe, who supposedly has a background in computer programming and is thought to have written the bulk of RaccoonO365, ran a seemingly professional organisation with specialist development, sales and customer support resources.
To obfuscate their activities, the gang registered multiple internet domains with fake names and addresses around the world, although screengrabs of Ogundipe’s LinkedIn profile shared by the DCU suggest he may be located in Benin City in southern Nigeria.
A criminal referral for his arrest has been circulated to international law enforcement. However, whether or not he ever faces justice is unknown, said Masada.
“Legal challenges persist, especially in places where prosecuting cyber criminals is difficult. Today’s patchwork of international laws remains a major obstacle and cyber criminals exploit these gaps,” said Masada.
“Governments must work together to align their cyber crime laws, speed up cross-border prosecutions and close the loopholes that let criminals operate with impunity. The international community should also support nations that are working to strengthen their defences, while holding accountable those that turn a blind eye to cyber crime.
“While we press forward in the courts, organisations and individuals should also continue to bolster their defences. That means enabling strong multi-factor authentication on accounts, using up-to-date anti-phishing and security tools, and educating users to stay vigilant against evolving scams.”
Tech
Inside Trumpworld’s Reality Distortion Field

In the immediate aftermath of Charlie Kirk’s killing, Donald Trump’s advisors were sure who was to blame. That law enforcement says they were wrong didn’t, and doesn’t, much seem to matter.
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Tech
Nvidia CEO Jensen Huang Is Bananas for Google Gemini’s AI Image Generator

Nvidia CEO Jensen Huang is in London, standing in front of a room full of journalists, outing himself as a huge fan of Gemini’s Nano Banana. “How could anyone not love Nano Banana? I mean Nano Banana, how good is that? Tell me it’s not true!” He addresses the room. No one responds. “Tell me it’s not true! It’s so good. I was just talking to Demis [Hassabis, CEO of DeepMind] yesterday and I said ‘How about that Nano Banana! How good is that?’”
It looks like lots of people agree with him: The popularity of the Nano Banana AI image generator—which launched in August and allows users to make precise edits to AI images while preserving the quality of faces, animals, or other objects in the background—has caused a 300 million image surge for Gemini in the first few days in September already, according to a post on X by Josh Woodward, VP of Google Labs and Google Gemini.
Huang, whose company was among a cohort of big US technology companies to announce investments into data centers, supercomputers, and AI research in the UK on Tuesday, is on a high. Speaking ahead of a white-tie event with UK prime minister Keir Starmer (where he plans to wear custom black leather tails), he’s boisterously optimistic about the future of AI in the UK, saying the country is “too humble” about the country’s potential for AI advancements.
He cites the UK’s pedigree in themes as wide as the industrial revolution, steam trains, DeepMind (now owned by Google), and university researchers, as well as other tangential skills. “No one fries food better than you do,” he quips. “Your tea is good. You’re great. Come on!”
Nvidia announced a $683 million equity investment in datacenter builder Nscale this week, a move that—alongside investments from OpenAI and Microsoft—has propelled the company to the epicenter of this AI push in the UK. Huang estimates that Nscale will generate more than $68 billion in revenues over six years. “I’ll go on record to say I’m the best thing that’s ever happened to him,” he says, referring to Nscale CEO Josh Payne.
“As AI services get deployed—I’m sure that all of you use it. I use it every day and it’s improved my learning, my thinking. It’s helped me access information, access knowledge a lot more efficiently. It helps me write, helps me think, it helps me formulate ideas. So my experience with AI is likely going to be everybody’s experience. I have the benefit of using all the AI—how good is that?”
The leather-jacket-wearing billionaire, who previously told WIRED that he uses AI agents in his personal life, has expanded on how he uses AI (that’s not Nano Banana) for most daily things, including his public speeches and research.
“I really like using an AI word processor because it remembers me and knows what I’m going to talk about. I could describe the different circumstance that I’m in and yet it still knows that I’m Jensen, just in a different circumstance,” Huang explains. “In that way it could reshape what I’m doing and be helpful. It’s a thinking partner, it’s truly terrific, and it saves me a ton of time. Frankly, I think the quality of work is better.”
His favorite one to use “depends on what I’m doing,” he says. “For something more technical I will use Gemini. If I’m doing something where it’s a bit more artistic I prefer Grok. If it’s very fast information access I prefer Perplexity—it does a really good job of presenting research to me. And for near everyday use I enjoy using ChatGPT,” Huang says.
“When I am doing something serious I will give the same prompt to all of them, and then I ask them to, because it’s research oriented, critique each other’s work. Then I take the best one.”
In the end though, all topics lead back to Nano Banana. “AI should be democratized for everyone. There should be no person who is left behind, it’s not sensible to me that someone should be left behind on electricity or the internet of the next level of technology,” he says.
“AI is the single greatest opportunity for us to close the technology divide,” says Huang. “This technology is so easy to use—who doesn’t know how to use Nano?”
Tech
Scandium doping technique extends sodium-ion battery life

Because lithium is relatively scarce and sodium is abundant in Earth’s crust, sodium-ion batteries are being investigated as viable, cost-effective alternatives to the widely used lithium-ion batteries. In these batteries, the choice of cathode material primarily influences battery capacity and stability.
Layered sodium manganese oxides (Na2/3MnO2) have attracted significant attention in recent years as cathode materials for high-capacity sodium-ion batteries without using any rare-earth metals. However, while these materials exhibit high initial capacity, their rapid capacity fading during charge-discharge cycling remains a significant challenge.
During charge-discharge cycling of NaMnO2 electrodes, Na+ ions are constantly inserted and extracted from the cathode material. This is accompanied by changes in the oxidation states of manganese (Mn) between Mn3+ to Mn4+. When Mn3+ ions form, they distort their surrounding lattice to lower electronic energy, a phenomenon known as Jahn-Teller distortion.
Over time, these repeated distortions lead to a buildup of strain at both atomic and particle levels in NaMnO2, eventually resulting in the loss of crystallinity and severe capacity degradation. This is the main cause of capacity loss during cycling of Na2/3MnO2 electrodes. Recent studies have attempted to address this issue by substituting metals at Mn sites.
In a recent study, a research team led by Professor Shinichi Komaba, along with Mr. Kodai Moriya and Project Scientist Dr. Shinichi Kumakura, from the Department of Applied Chemistry at Tokyo University of Science, Japan, revealed how scandium (Sc) doping can dramatically improve the cycling stability of P’2 polytype of Na2/3MnO2 electrodes.
“Previously, we discovered that Sc doping in P’2 Na2/3[Mn1-xScx]O2 electrodes can improve the battery performance and long-term stability,” explains Prof. Komaba. “However, the exact mechanism for this improvement remains unresolved, and it was unclear whether this effect is generally applicable. In this study, we systematically studied P2 and P’2 polytypes of Na2/3[Mn1-xScx]O2 to understand the role of Sc doping.”
Their study was published in the journal Advanced Materials on September 12, 2025.
The crystal structure of Na2/3MnO2 has several polytypes, which differ in several aspects. A key difference between the P2 and P’2 polytypes is that former exhibits localized Jahn-Teller distortions, while the latter features cooperative Jahn-Teller distortion where the distortions are aligned in a long-range order. The researchers conducted a series of experiments on both doped and undoped samples of each polytype containing varying amounts of Sc.
Structural tests revealed that Sc doping in P’2 Na2/3[Mn1-xScx]O2 effectively modulates its structure, resulting in smaller particles and altered crystal growth, while preserving cooperative Jahn-Teller distortion and superstructure. This significantly improves structural stability. In addition, the team found that Sc doping prevents side reactions with liquid electrolytes and enhances moisture stability by forming a cathode-electrolyte interface layer.
As a result, in Na-half-cell tests, the Sc-doped P’2 type Na2/3[Mn1-xScx]O2 electrodes demonstrated a substantial improvement in cycling stability. The sample with 8% Sc doping was found to have optimal performance.
The researchers also found that unlike non-doped samples, the crystallinity of the doped samples was remarkably maintained during cycling. Interestingly, Sc doping did not improve the cycling stability of P2 NaMnO2 electrodes, indicating a specific synergy between Sc doping and cooperative Jahn-Teller distortion. Furthermore, doping with other similar metal cations, like ytterbium and aluminum, did not reduce capacity fading, highlighting the unique role of Sc.
They also tested the effect of pre-cycling, a common technique to improve cycle life, which further improved capacity retention in the doped P’2 Na2/3[Mn1-xScx]O2 electrodes. Building upon these results, the researchers fabricated coin-type full cells using the 8% Sc-doped P’2 Na2/3[Mn1-xScx]O2 electrodes, which demonstrated an impressive 60% capacity retention after 300 cycles.
“Since Sc is an expensive metal, our study demonstrates its feasibility in the development of batteries. Our findings can potentially lead to development of high-performance and long-life sodium-ion batteries,” says Prof. Komaba, highlighting the importance of their research.
“Moreover, beyond sodium-ion batteries, our study illustrates a new strategy to extend the structural stability of layered metal oxides involving the lattice distortion and improve the performance of batteries made using these materials.”
Overall, this study demonstrates the unique role of Sc doping for improving cycling stability of sodium-ion batteries, paving the way for their broader adoption.
More information:
Kodai Moriya et al, Unique Impacts of Scandium Doping on Electrode Performance of P’2‐ and P2‐type Na2/3MnO2, Advanced Materials (2025). DOI: 10.1002/adma.202511719
Citation:
Scandium doping technique extends sodium-ion battery life (2025, September 17)
retrieved 17 September 2025
from https://techxplore.com/news/2025-09-scandium-doping-technique-sodium-ion.html
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