Structure of ice VII with Hirshfeld atom refinement

Gajda, R., Chodkiewicz, M., Zhang, D., Nguyen, P., Prakapenka, V. & Wozniak, K.,  Structure of ice VII with Hirshfeld atom refinement,  (2025). IUCrJ, 12.  https://doi.org/10.1107/S2052252525002581 https://journals.iucr.org/m/issues/2025/03/00/lt5074/lt5074.pdf  

In Situ Diffraction and Ex Situ Transmission X-Ray Microscopy Studies of Solid-State Upcycling for NMC Cathodes

Nisbet, Matthew L., Diana Luong, Eva Allen, Sohyun Park, Tiffany L. Kinnibrugh, Joanne E. Stubbs, Peter J. Eng, John T. Vaughey, and Tim T. Fister. “In Situ Diffraction and Ex Situ Transmission X‐Ray Microscopy Studies of Solid‐State Upcycling for NMC Cathodes.” Advanced Energy Materials (2025): 2500698. https://advanced.onlinelibrary.wiley.com/doi/pdf/10.1002/aenm.202500698  

Belowground plant carbon and nitrogen exchange: plant-derived carbon inputs and pore structure formation

Jin Ho Lee, Tayler C. Ulbrich, Maxwell Oerther, Yakov Kuzyakov, Andrey K. Guber, Alexandra N. Kravchenko, Belowground plant carbon and nitrogen exchange: plant-derived carbon inputs and pore structure formation, Soil Biology and Biochemistry, Volume 207, 2025, 109833, ISSN 0038-0717, https://doi.org/10.1016/j.soilbio.2025.109833. https://www.sciencedirect.com/science/article/pii/S0038071725001269?via%3Dihub  

Superconducting dome and structural changes in LaRu3⁢Si2 under pressure

Li, Zhuoqi, Shuyuan Huyan, Elizabeth C. Thompson, Tyler J. Slade, Dongzhou Zhang, Young J. Ryu, Wenli Bi, Sergey L. Bud’ko, and Paul C. Canfield. “Superconducting dome and structural changes in LaRu. Phys. Rev B, 111, 144505 (2025), DOI: 10.1103/PhysRevB.111.144505 https://journals.aps.org/prb/abstract/10.1103/PhysRevB.111.144505  

Equilibrium Silicon Isotope Fractionation in Eclogites and Granites Constrained by Single Crystal X‐Ray Diffraction and the Force Constants Approach

Zhang, Dongzhou, Jingui Xu, Przemyslaw K. Dera, Bin Chen, and Ming Chen. “Equilibrium silicon isotope fractionation in eclogites and granites constrained by single crystal X‐ray diffraction and the force constants approach.” Geophysical Research Letters 52, no. 8 (2025): e2023GL107954. https://agupubs.onlinelibrary.wiley.com/doi/epdf/10.1029/2023GL107954  

The role of dissolved sulfide in controlling copper speciation in basaltic melts

Antonio Lanzirotti, Michelle Muth, Elisabet Head, Matthew Newville, Molly McCanta, Paul J. Wallace, Zoltan Zajacz, The role of dissolved sulfide in controlling copper speciation in basaltic melts, Geochimica et Cosmochimica Acta, Volume 395, 2025, Pages 181-194, ISSN 0016-7037, https://doi.org/10.1016/j.gca.2025.02.037. https://www.sciencedirect.com/science/article/pii/S0016703725001152?via%3Dihub  

Unusual sulfide-rich magmatic apatite crystals from >2.7 Ga Abitibi Greenstone Belt, Canada

Meng, Xuyang, David R. Mole, Adam C. Simon, Jingwen Mao, Daniel J. Kontak, Pedro J. Jugo, and Jackie M. Kleinsasser. “Unusual sulfide-rich magmatic apatite crystals from> 2.7 Ga Abitibi Greenstone Belt, Canada.” American Mineralogist 110, no. 4 (2025): 622-629. https://pubs.geoscienceworld.org/msa/ammin/article-abstract/110/4/622/645687/Unusual-sulfide-rich-magmatic-apatite-crystals?redirectedFrom=fulltext