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Transference, initially introduced by Sigmund Freud, represents a crucial concept in psychoanalysis, referring to the displacement of feelings, fantasies, and desires from past relationships onto the therapist. Though central to psychoanalytic therapies, transference is acknowledged across many psychotherapeutic approaches, albeit with differing views on its clinical relevance. Empirical research has shown that transference phenomena occur in all close relationships, including therapeutic settings, and are influenced by factors like the patient's attachment style. While the relationship between transference and therapy outcomes remains ambiguous, insights gained from transference work-particularly through its interpretation-are seen as beneficial to therapeutic progress, enhancing patient's awareness and improving treatment results. This systematic review examines the development and validation of 15 assessment tools for measuring transference, offering a comprehensive overview of instruments used across various psychotherapies. The tools vary in their method of data collection, including observational ratings, clinician reports, and patient self-reports. The review highlights the need for further studies comparing these instruments, exploring their effectiveness across different patient populations, and addressing the relationship between transference and therapeutic alliance to improve clinical practice.
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http://dx.doi.org/10.1002/cpp.70118 | DOI Listing |
Proc Natl Acad Sci U S A
September 2025
Department of Materials Science and Engineering, City University of Hong Kong, Kowloon, Hong Kong 999077, China.
Solid-state electrolytes (SSEs) are being extensively researched as replacements for liquid electrolytes in future batteries. Despite significant advancements, there are still challenges in using SSEs, particularly in extreme conditions. This study presents a hydrated metal-organic ionic cocrystal (HMIC) solid-state ion conductor with a solvent-assisted ion transport mechanism suitable for extreme operating conditions.
View Article and Find Full Text PDFACS Omega
September 2025
Department of Chemical Engineering, Hongik University, 94 Wausan-ro, Mapo-gu, Seoul 04066, Republic of Korea.
Commercial lithium-ion batteries using organic solvent-based liquid electrolytes (LEs) face safety issues, including risks of fire and explosion. As a safer alternative, solid-state electrolytes are being extensively explored to replace these organic solvent-based LEs. Among various solid electrolyte options, polymer electrolytes offer advantages such as flexibility and ease of processing.
View Article and Find Full Text PDFArch Sci (Dordr)
September 2025
Department of Cultural and Environmental Heritage, University of Milan, Milan, Italy.
This article maps the alternative archives of the Rum community, those that do not fully align either with national mnemonics or the minority's dominant archival politics. I demonstrate how the Rum minority performs and enacts its archives-what I define as archival enactment-in order to claim grassroots agency in its mnemonic preservation. Despite their sociopolitical and cultural significance and their important potential for the study of archival science, the Rum minority's archival practices have been almost entirely ignored in the scholarship.
View Article and Find Full Text PDFMater Horiz
September 2025
Department of Chemistry, Temple University, Philadelphia, PA 19122, USA.
This work presents the synthesis of a molecular crystal of adiponitrile (Adpn) and LiI a simple melting method. The molecular crystal has both Li and I channels and can be either a Li or an I conductor. In the stoichiometric crystal (Adpn)LiI, the Li ions interact only with four CN groups of Adpn, while the I ions are uncoordinated.
View Article and Find Full Text PDFACS Appl Mater Interfaces
September 2025
Ministry of Education Key Laboratory for the Green Preparation and Application of Functional Materials, Hubei Key Laboratory of Polymer Materials, School of Materials Science and Engineering, Hubei University, Wuhan 430062, China.
Developing solid electrolytes with high ionic conductivity, a high voltage window, low flammability, and excellent interface compatibilities with both the anode and cathode for lithium-metal batteries is still a great challenge but highly desirable. Herein, we achieve this target through an in situ copolymerization of vinyl ethylene carbonate (VEC) together with acrylonitrile (AN) under fitting ratios inside a porous polyacrylonitrile (PAN) fiber membrane doped with flame-retardant decabromodiphenyl ethane (DBDPE) molecules. The received fiber-reinforced polycarbonate-based composite electrolyte with an ultrathin thickness of 13 μm exhibits good internal interfacial compatibility because of the same AN structure and superior flame-retardant performance due to the doped DBDPE molecules.
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