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1.
Gerontol Geriatr Educ ; : 1-13, 2023 Aug 29.
Article in English | MEDLINE | ID: mdl-37642397

ABSTRACT

While the older adult population continues to grow, psychologists specializing in geropsychology remain a small fraction of the workforce. Facing this reality, it is essential for training programs to better monitor whether their students receive adequate training to serve older adults. The current study describes a brief, logistically feasible, and cost-effective program evaluation conducted within one APA-accredited clinical psychology doctoral program. The evaluation consisted of an online survey of doctoral students (n = 99) that explored their field training experiences with older adults, coursework related to aging, and their overall interest in working with older adults. Students reported significantly less coursework and significantly less field work focused on serving older adults when compared to other age groups. However, students reported a high level of interest in learning about aging, with a total of 73.74% of participants (n = 73) reporting at least some current interest. A number of institutional actions resulted from this evaluation, which demonstrate how a brief evaluation can yield data that is practically useful. This case example provides a useful model for others to follow, and may support other institutions' efforts to evaluate, monitor, and make potential improvements to aging-related training in their own programs.

2.
Nature ; 605(7911): 687-695, 2022 05.
Article in English | MEDLINE | ID: mdl-35614246

ABSTRACT

The study and application of transition metal hydrides (TMHs) has been an active area of chemical research since the early 1960s1, for energy storage, through the reduction of protons to generate hydrogen2,3, and for organic synthesis, for the functionalization of unsaturated C-C, C-O and C-N bonds4,5. In the former instance, electrochemical means for driving such reactivity has been common place since the 1950s6 but the use of stoichiometric exogenous organic- and metal-based reductants to harness the power of TMHs in synthetic chemistry remains the norm. In particular, cobalt-based TMHs have found widespread use for the derivatization of olefins and alkynes in complex molecule construction, often by a net hydrogen atom transfer (HAT)7. Here we show how an electrocatalytic approach inspired by decades of energy storage research can be made use of in the context of modern organic synthesis. This strategy not only offers benefits in terms of sustainability and efficiency but also enables enhanced chemoselectivity and distinct, tunable reactivity. Ten different reaction manifolds across dozens of substrates are exemplified, along with detailed mechanistic insights into this scalable electrochemical entry into Co-H generation that takes place through a low-valent intermediate.

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